Publikationen von Professor Dr. Behm
2015
482.
Reichert,
R.;
Zambrzycki,
C.;
Behm,
R. J.
Photo-electrochemical Oxidation of Organic C1 Molecules over WO3 Films in Aqueous Electrolyte: Competition Between Water Oxidation and C1 Oxidation
Chemsuschem, 8 (21) :3677–3687
2015
Photo-electrochemical Oxidation of Organic C1 Molecules over WO3 Films in Aqueous Electrolyte: Competition Between Water Oxidation and C1 Oxidation
Chemsuschem, 8 (21) :3677–3687
2015
DOI: | https://doi.org/10.1002/cssc.201500800 |
481.
Buchner,
F.;
Bozorgchenani,
M.;
Uhl,
B.;
Farkhondeh,
H.;
Bansmann,
J.;
Behm,
R. J.
Reactive interaction of (sub-)monolayers and multilayers of the Ionic Liquid 1-butyl-1-methylpyrrolidinium bis(trifluoro-methylsulfonyl)imide with coadsorbed lithium on Cu(111)
J Phys Chem C, 119 (29) :16649–16659
2015
Reactive interaction of (sub-)monolayers and multilayers of the Ionic Liquid 1-butyl-1-methylpyrrolidinium bis(trifluoro-methylsulfonyl)imide with coadsorbed lithium on Cu(111)
J Phys Chem C, 119 (29) :16649–16659
2015
DOI: | https://doi.org/10.1021/acs.jpcc.5b03765 |
480.
Wang,
L. C.;
Widmann,
D.;
Behm,
R. J.
Reactive removal of surface oxygen by H-2, CO and CO/H-2 on a Au/CeO2 catalyst and its relevance to the preferential CO oxidation (PROX) and reverse water gas shift (RWGS) reaction
Catal Sci Technol, 5 (2) :925–941
2015
Reactive removal of surface oxygen by H-2, CO and CO/H-2 on a Au/CeO2 catalyst and its relevance to the preferential CO oxidation (PROX) and reverse water gas shift (RWGS) reaction
Catal Sci Technol, 5 (2) :925–941
2015
DOI: | https://doi.org/10.1039/c4cy01030b |
479.
Behm,
R. J.
Role of surface oxygen vacancies in heterogeneous Au catalysis
Abstracts of Papers of the American Chemical Society, 249
2015
Role of surface oxygen vacancies in heterogeneous Au catalysis
Abstracts of Papers of the American Chemical Society, 249
2015
478.
Abdel-Mageed,
A. M.;
Widmann,
D.;
Olesen,
S. E.;
Chorkendorff,
I.;
Behm,
R. J.
Selective CO Methanation on Ru/TiO2 Catalysts: Role and Influence of Metal-Support Interactions
Acs Catal, 5 (11) :6753–6763
2015
Selective CO Methanation on Ru/TiO2 Catalysts: Role and Influence of Metal-Support Interactions
Acs Catal, 5 (11) :6753–6763
2015
DOI: | https://doi.org/10.1021/acscatal.5b01520 |
477.
Helen,
M.;
Reddy,
M. A.;
Golla-Schindler,
U.;
Behm,
R. J.;
Fichtner,
M.
Single step transformation of sulphur to Li2S2/Li2S in Li-S batteries
Sci. Rep., 5
2015
Single step transformation of sulphur to Li2S2/Li2S in Li-S batteries
Sci. Rep., 5
2015
DOI: | https://doi.org/10.1038/srep12146 |
476.
Osterkamp,
C.;
Lang,
J.;
Scharpf,
J.;
Mueller,
C.;
McGuinness,
L. P.;
Behm,
R. J.;
Naydenov,
B.;
Jelezko,
F.
Stabilizing shallow color centers in diamond created by nitrogen delta-doping using SF6 plasma treatment
Appl. Phys. Lett., 106 (11)
2015
Stabilizing shallow color centers in diamond created by nitrogen delta-doping using SF6 plasma treatment
Appl. Phys. Lett., 106 (11)
2015
DOI: | https://doi.org/10.1063/1.4915305 |
475.
Mancini,
M.;
Bekaert,
E.;
Marinaro,
M.;
Biasi,
L.;
Behm,
R. J.;
Wohlfahrt-Mehrens,
M.
Study on the stability of Li2MnSiO4 cathode material in different electrolyte systems for Li-ion batteries
Electrochim. Acta, 176 :679–688
2015
Study on the stability of Li2MnSiO4 cathode material in different electrolyte systems for Li-ion batteries
Electrochim. Acta, 176 :679–688
2015
DOI: | https://doi.org/10.1016/j.electacta.2015.07.015 |
474.
Weinberger,
M.;
Pfeifer,
C.;
Schindler,
S.;
Behm,
R. J.;
Wohlfahrt-Mehrens,
M.
Submicron-sized silicon oxycarbide spheres as anodes for alkali ion batteries
J. Mater. Chem.a, 3 (47) :23707–23715
2015
Submicron-sized silicon oxycarbide spheres as anodes for alkali ion batteries
J. Mater. Chem.a, 3 (47) :23707–23715
2015
DOI: | https://doi.org/10.1039/c5ta06277b |
2014
473.
Reichert,
R.;
Behm,
R. J.
A novel photoelectrochemical flow cell with online mass spectrometric detection: oxidation of formic acid on a nanocrystalline TiO2 electrode
Phys. Chem. Chem. Phys., 16 (45) :25076–25080
2014
A novel photoelectrochemical flow cell with online mass spectrometric detection: oxidation of formic acid on a nanocrystalline TiO2 electrode
Phys. Chem. Chem. Phys., 16 (45) :25076–25080
2014
DOI: | https://doi.org/10.1039/c4cp03320e |
472.
Widmann,
D.;
Behm,
R. J.
Activation of Molecular Oxygen and the Nature of the Active Oxygen Species for CO Oxidation on Oxide Supported Au Catalysts
Acc. Chem. Res., 47 (3) :740–749
2014
Activation of Molecular Oxygen and the Nature of the Active Oxygen Species for CO Oxidation on Oxide Supported Au Catalysts
Acc. Chem. Res., 47 (3) :740–749
2014
DOI: | https://doi.org/10.1021/ar400203e |
471.
Behm,
R. J.
Adsorption and oxidation of formaldehyde on a polycrystalline Pt film electrode: An in situ IR spectroscopy search for adsorbed reaction intermediates
Beilstein J. Nanotechnol., 5 :747–759
2014
Adsorption and oxidation of formaldehyde on a polycrystalline Pt film electrode: An in situ IR spectroscopy search for adsorbed reaction intermediates
Beilstein J. Nanotechnol., 5 :747–759
2014
DOI: | https://doi.org/10.3762/bjnano.5.87 |
470.
Uhl,
B.;
Buchner,
F.;
Gabler,
S.;
Bozorgchenani,
M.;
Behm,
R. J.
Adsorption and reaction of sub-monolayer films of an ionic liquid on Cu(111)
Chem. Commun., 50 (62) :8601–8604
2014
Adsorption and reaction of sub-monolayer films of an ionic liquid on Cu(111)
Chem. Commun., 50 (62) :8601–8604
2014
DOI: | https://doi.org/10.1039/c4cc03203a |
469.
Rongeat,
C.;
Reddy,
M. A.;
Behm,
R. J.;
Fichtner,
M.
Development of new anode composite materials for fluoride ion batteries
J. Mater. Chem.a, 2 (48) :20861–20872
2014
Development of new anode composite materials for fluoride ion batteries
J. Mater. Chem.a, 2 (48) :20861–20872
2014
DOI: | https://doi.org/10.1039/c4ta02840f |
468.
Marcu,
A.;
Toth,
G.;
Behm,
R. J.
Electrochemical Test Procedures for Accelerated Evaluation of Fuel Cell Cathode Catalyst Degradation
Fuel Cells, 14 (3, SI) :378–385
2014
Electrochemical Test Procedures for Accelerated Evaluation of Fuel Cell Cathode Catalyst Degradation
Fuel Cells, 14 (3, SI) :378–385
2014
DOI: | https://doi.org/10.1002/fuce.201300138 |
467.
Brimaud,
S.;
Solla-Gullon,
J.;
Weber,
I.;
Feliu,
J. M.;
Behm,
R. J.
Formic Acid Electrooxidation on Noble-Metal Electrodes: Role and Mechanistic Implications of pH, Surface Structure, and Anion Adsorption
Chemelectrochem, 1 (6) :1075–1083
2014
Formic Acid Electrooxidation on Noble-Metal Electrodes: Role and Mechanistic Implications of pH, Surface Structure, and Anion Adsorption
Chemelectrochem, 1 (6) :1075–1083
2014
DOI: | https://doi.org/10.1002/celc.201400011 |
466.
Takehiro,
N.;
Bergbreiter,
A.;
Norskov,
J. K.;
Behm,
R. J.
Hydrogen adsorption on bimetallic PdAu(111) surface alloys: minimum adsorption ensemble, ligand and ensemble effects, and ensemble confinement
Phys. Chem. Chem. Phys., 16 (43) :23930–23943
2014
Hydrogen adsorption on bimetallic PdAu(111) surface alloys: minimum adsorption ensemble, ligand and ensemble effects, and ensemble confinement
Phys. Chem. Chem. Phys., 16 (43) :23930–23943
2014
DOI: | https://doi.org/10.1039/c4cp02589j |
465.
Zheng,
Y.-L.;
Jiang,
D.-C.;
Chen,
Y.-X.;
Behm,
R. J.
Interaction of C-1 Molecules with a Pt Electrode at Open Circuit Potential: A Combined Infrared and Mass Spectroscopic Study
J Phys Chem C, 118 (13) :6799–6808
2014
Interaction of C-1 Molecules with a Pt Electrode at Open Circuit Potential: A Combined Infrared and Mass Spectroscopic Study
J Phys Chem C, 118 (13) :6799–6808
2014
DOI: | https://doi.org/10.1021/jp411982p |
464.
Hartmann,
H.;
Bansmann,
J.;
Behm,
R. J.
Interaction of coadsorbed CO and deuterium on a bimetallic, Pt monolayer island modified Ru(0001) surface
J Phys Chem C, 118 (50) :28948–28958
2014
Interaction of coadsorbed CO and deuterium on a bimetallic, Pt monolayer island modified Ru(0001) surface
J Phys Chem C, 118 (50) :28948–28958
2014
DOI: | https://doi.org/10.1021/jp504409s |
463.
Buchner,
F.;
Uhl,
B.;
Tonigold,
K.;
Groß,
A.;
Behm,
R. J.
Interactions and structure formation at the solid - liquid interface
Abstracts of Papers of the American Chemical Society, 247
2014
Interactions and structure formation at the solid - liquid interface
Abstracts of Papers of the American Chemical Society, 247
2014
462.
Gebauer,
C.;
Wassner,
M.;
Huesing,
N.;
Behm,
R. J.
Membrane Fuel Cell Cathode Catalysts Based on Titanium Oxide Supported Platinum Nanoparticles
Chemphyschem, 15 (10, SI) :2094–2107
2014
Membrane Fuel Cell Cathode Catalysts Based on Titanium Oxide Supported Platinum Nanoparticles
Chemphyschem, 15 (10, SI) :2094–2107
2014
DOI: | https://doi.org/10.1002/cphc.201402019 |
461.
Gebauer,
C.;
Wassner,
M.;
Bansmann,
J.;
Husing,
N.;
Behm,
R. J.
Novel N, C doped Ti(IV)-oxides as Pt-free catalysts for the O2 reduction reaction
Electrochim. Acta, 146 :335–345
2014
Novel N, C doped Ti(IV)-oxides as Pt-free catalysts for the O2 reduction reaction
Electrochim. Acta, 146 :335–345
2014
DOI: | https://doi.org/10.1016/j.electacta.2014.08.056 |
460.
Widmann,
D.;
Hocking,
E.;
Behm,
R. J.
On the origin of the selectivity in the preferential CO oxidation on Au/TiO2 - Nature of the active oxygen species for H-2 oxidation
J. Catal., 317 :272–276
2014
On the origin of the selectivity in the preferential CO oxidation on Au/TiO2 - Nature of the active oxygen species for H-2 oxidation
J. Catal., 317 :272–276
2014
DOI: | https://doi.org/10.1016/j.jcat.2014.06.011 |
459.
Brimaud,
S.;
Engstfeld,
A. K.;
Alves,
O. B.;
Hoster,
H. E.;
Behm,
R. J.
Oxygen Reduction on Structurally Well Defined, Bimetallic PtRu Surfaces: Monolayer PtxRu1-x/Ru(0001) Surface Alloys Versus Pt Film Covered Ru(0001)
Top Catal, 57 (1-4) :222–235
2014
Oxygen Reduction on Structurally Well Defined, Bimetallic PtRu Surfaces: Monolayer PtxRu1-x/Ru(0001) Surface Alloys Versus Pt Film Covered Ru(0001)
Top Catal, 57 (1-4) :222–235
2014
DOI: | https://doi.org/10.1007/s11244-013-0177-0 |
458.
Engstfeld,
A. K.;
Brimaud,
S.;
Behm,
R. J.
Potential-Induced Surface Restructuring-The Need for Structural Characterization in Electrocatalysis Research
Angew Chem Int Edit, 53 (47) :12936–12940
2014
Potential-Induced Surface Restructuring-The Need for Structural Characterization in Electrocatalysis Research
Angew Chem Int Edit, 53 (47) :12936–12940
2014
DOI: | https://doi.org/10.1002/anie.201404479 |
457.
Stoeckle,
B.;
Ng,
D. Y. W.;
Meier,
C.;
Paust,
T.;
Bischoff,
F.;
Behm,
R. J.;
Gottschalk,
K.-E.;
Ziener,
U.
Precise Control of Polydopamine Film Formation by Electropolymerization
Macromol. Symp., 346 (1, SI) :73–81
2014
Precise Control of Polydopamine Film Formation by Electropolymerization
Macromol. Symp., 346 (1, SI) :73–81
2014
DOI: | https://doi.org/10.1002/masy.201400130 |
456.
Brimaud,
S.;
Behm,
R. J.
Shape-selected nanocrystals for in situ spectro-electrochemistry studies on structurally well defined surfaces under controlled electrolyte transport: A combined in situ ATR-FTIR/online DEMS investigation of CO electrooxidation on Pt
Beilstein J. Nanotechnol., 5 :735–746
2014
Shape-selected nanocrystals for in situ spectro-electrochemistry studies on structurally well defined surfaces under controlled electrolyte transport: A combined in situ ATR-FTIR/online DEMS investigation of CO electrooxidation on Pt
Beilstein J. Nanotechnol., 5 :735–746
2014
DOI: | https://doi.org/10.3762/bjnano.5.86 |
455.
Buchner,
F.;
Farkhondeh,
H.;
Bozorgchenani,
M.;
Uhl,
B.;
Behm,
R. J.
Temperature-induced structural and chemical changes of ultrathin ethylene carbonate films on Cu(111)
Phys. Chem. Chem. Phys., 16 (23) :11191–11195
2014
Temperature-induced structural and chemical changes of ultrathin ethylene carbonate films on Cu(111)
Phys. Chem. Chem. Phys., 16 (23) :11191–11195
2014
DOI: | https://doi.org/10.1039/c4cp01417k |
454.
Reichert,
R.;
Schnaidt,
J.;
Behm,
R. J.
The influence of reactive side products on the electrooxidation of methanol - a combined in situ infrared spectroscopy and online mass spectrometry study
Phys. Chem. Chem. Phys., 16 (27) :13780–13799
2014
The influence of reactive side products on the electrooxidation of methanol - a combined in situ infrared spectroscopy and online mass spectrometry study
Phys. Chem. Chem. Phys., 16 (27) :13780–13799
2014
DOI: | https://doi.org/10.1039/c4cp01229a |
453.
Gao,
P.;
Zhao,
X.;
Zhao-Karger,
Z.;
Behm,
R. J.;
Fichtner,
M.
Vanadium Oxychloride/Magnesium Electrode Systems for Chloride Ion Batteries
Acs Appl Mater Inter, 6 (24) :22430–22435
2014
Vanadium Oxychloride/Magnesium Electrode Systems for Chloride Ion Batteries
Acs Appl Mater Inter, 6 (24) :22430–22435
2014
DOI: | https://doi.org/10.1021/am5064266 |
2013
452.
Uhl,
B.;
Buchner,
F.;
Alwast,
D.;
Wagner,
N.;
Behm,
R. J.
Adsorption of the ionic liquid [BMP][TFSA] on Au(111) and Ag(111): substrate effects on the structure formation investigated by STM
Beilstein J. Nanotechnol., 4 :903–918
2013
Adsorption of the ionic liquid [BMP][TFSA] on Au(111) and Ag(111): substrate effects on the structure formation investigated by STM
Beilstein J. Nanotechnol., 4 :903–918
2013
DOI: | https://doi.org/10.3762/bjnano.4.102 |
451.
Pietzka,
C.;
Scharpf,
J.;
Fikry,
M.;
Forghani,
K.;
Behm,
R. J.;
Bernhard,
J.;
Kohn,
E.
Analysis of diamond surface channel field-effect transistors with AlN passivation layers
J. Appl. Phys., 114 (11)
2013
Analysis of diamond surface channel field-effect transistors with AlN passivation layers
J. Appl. Phys., 114 (11)
2013
DOI: | https://doi.org/10.1063/1.4819453 |
450.
Uhl,
B.;
Cremer,
T.;
Maier,
F.;
Steinrueck,
H.-P.;
Behm,
R. J.
At the ionic liquid|metal interface: structure formation and temperature dependent behavior of an ionic liquid adlayer on Au(111)
Phys. Chem. Chem. Phys., 15 (40) :17295–17302
2013
At the ionic liquid|metal interface: structure formation and temperature dependent behavior of an ionic liquid adlayer on Au(111)
Phys. Chem. Chem. Phys., 15 (40) :17295–17302
2013
DOI: | https://doi.org/10.1039/c3cp52184b |
449.
Han,
Y.;
Engstfeld,
A. K.;
Behm,
R. J.;
Evans,
J. W.
Atomistic modeling of the directed-assembly of bimetallic Pt-Ru nanoclusters on Ru(0001)-supported monolayer graphene
J. Chem. Phys., 138 (13)
2013
Atomistic modeling of the directed-assembly of bimetallic Pt-Ru nanoclusters on Ru(0001)-supported monolayer graphene
J. Chem. Phys., 138 (13)
2013
DOI: | https://doi.org/10.1063/1.4798348 |
448.
Wang,
L.-C.;
Jin,
H.;
Widmann,
D.;
Behm,
R. J.
Catalytic activity of nanostructured Au: Scale effects versus bimetallic/bifunctional effects in low-temperature CO oxidation on nanoporous Au
Beilstein J. Nanotechnol., 4 :111–128
2013
Catalytic activity of nanostructured Au: Scale effects versus bimetallic/bifunctional effects in low-temperature CO oxidation on nanoporous Au
Beilstein J. Nanotechnol., 4 :111–128
2013
DOI: | https://doi.org/10.3762/bjnano.4.13 |
447.
Brimaud,
S.;
Behm,
R. J.
Electrodeposition of a Pt Monolayer Film: Using Kinetic Limitations for Atomic Layer Epitaxy
J. Am. Chem. Soc., 135 (32) :11716–11719
2013
Electrodeposition of a Pt Monolayer Film: Using Kinetic Limitations for Atomic Layer Epitaxy
J. Am. Chem. Soc., 135 (32) :11716–11719
2013
DOI: | https://doi.org/10.1021/ja4051795 |
446.
Sun,
S.;
Behm,
R. J.
Electrooxidation of ethanol on Pt-based and Pd-based catalysts in alkaline electrolyte under fuel cell relevant reaction and transport conditions
J Power Sources, 231 :122–133
2013
Electrooxidation of ethanol on Pt-based and Pd-based catalysts in alkaline electrolyte under fuel cell relevant reaction and transport conditions
J Power Sources, 231 :122–133
2013
DOI: | https://doi.org/10.1016/j.jpowsour.2012.12.091 |
445.
Osterkamp,
C.;
Scharpf,
J.;
Pezzagna,
S.;
Meijer,
J.;
Behm,
R. J.;
Naydenov,
B.;
Jelezko,
F.
Increasing the creation yield of shallow single defects in diamond by surface plasma treatment
Appl. Phys. Lett., 103 (19)
2013
Increasing the creation yield of shallow single defects in diamond by surface plasma treatment
Appl. Phys. Lett., 103 (19)
2013
DOI: | https://doi.org/10.1063/1.4829875 |
444.
Hartmann,
H.;
Behm,
R. J.
Kinetically Limited CO Adsorption: Spill-Over as a Highly Effective Adsorption Pathway on Bimetallic Surfaces
Chemphyschem, 14 (16) :3801–3805
2013
Kinetically Limited CO Adsorption: Spill-Over as a Highly Effective Adsorption Pathway on Bimetallic Surfaces
Chemphyschem, 14 (16) :3801–3805
2013
DOI: | https://doi.org/10.1002/cphc.201300722 |
443.
Schnaidt,
J.;
Heinen,
M.;
Behm,
R. J.
Mechanistic aspects of the electro-oxidation of ethylene glycol on a Pt-film electrode: A combined in situ IR spectroscopy and online mass spectrometry study of kinetic isotope effects
Catal. Today, 202 :154–162
2013
Mechanistic aspects of the electro-oxidation of ethylene glycol on a Pt-film electrode: A combined in situ IR spectroscopy and online mass spectrometry study of kinetic isotope effects
Catal. Today, 202 :154–162
2013
DOI: | https://doi.org/10.1016/j.cattod.2012.05.019 |
442.
Schnaidt,
J.;
Heinen,
M.;
Behm,
R. J.
Oxidation of 1-propanol on a Pt film electrode studied by combined electrochemical, in situ IR spectroscopy and online mass spectrometry measurements
Electrochim. Acta, 104 :505–517
2013
Oxidation of 1-propanol on a Pt film electrode studied by combined electrochemical, in situ IR spectroscopy and online mass spectrometry measurements
Electrochim. Acta, 104 :505–517
2013
DOI: | https://doi.org/10.1016/j.electacta.2012.12.139 |
441.
Schnaidt,
J.;
Heinen,
M.;
Behm,
R. J.
Oxidation of the Partly Oxidized Ethylene Glycol Oxidation Products Glycolaldehyde, Glyoxal, Glycolic Acid, Glyoxylic Acid, and Oxalic Acid on Pt Electrodes: A Combined ATR-FTIRS and DEMS Spectroelectrochemical Study
J Phys Chem C, 117 (24) :12689–12701
2013
Oxidation of the Partly Oxidized Ethylene Glycol Oxidation Products Glycolaldehyde, Glyoxal, Glycolic Acid, Glyoxylic Acid, and Oxalic Acid on Pt Electrodes: A Combined ATR-FTIRS and DEMS Spectroelectrochemical Study
J Phys Chem C, 117 (24) :12689–12701
2013
DOI: | https://doi.org/10.1021/jp402986z |
440.
Abdel-Mageed,
A. M.;
Eckle,
S.;
Anfang,
H. G.;
Behm,
R. J.
Selective CO methanation in CO2-rich H-2 atmospheres over a Ru/zeolite catalyst: The influence of catalyst calcination
J. Catal., 298 :148–160
2013
Selective CO methanation in CO2-rich H-2 atmospheres over a Ru/zeolite catalyst: The influence of catalyst calcination
J. Catal., 298 :148–160
2013
DOI: | https://doi.org/10.1016/j.jcat.2012.11.001 |
439.
Hartmann,
H.;
Behm,
R. J.
Spill-Over Effects on Bimetallic Pt/Ru(0001) Surfaces
Top Catal, 56 (15-17) :1333–1344
2013
Spill-Over Effects on Bimetallic Pt/Ru(0001) Surfaces
Top Catal, 56 (15-17) :1333–1344
2013
DOI: | https://doi.org/10.1007/s11244-013-0137-8 |
438.
Waldmann,
T.;
Klein,
J.;
Hoster,
H. E.;
Behm,
R. J.
Stabilization of Large Adsorbates by Rotational Entropy: A Time-Resolved Variable-Temperature STM Study
Chemphyschem, 14 (1) :162–169
2013
Stabilization of Large Adsorbates by Rotational Entropy: A Time-Resolved Variable-Temperature STM Study
Chemphyschem, 14 (1) :162–169
2013
DOI: | https://doi.org/10.1002/cphc.201200531 |
437.
Mancera,
L. A.;
Behm,
R. J.;
Groß,
A.
Structure and local reactivity of PdAg/Pd(111) surface alloys
Phys. Chem. Chem. Phys., 15 (5) :1497–1508
2013
Structure and local reactivity of PdAg/Pd(111) surface alloys
Phys. Chem. Chem. Phys., 15 (5) :1497–1508
2013
DOI: | https://doi.org/10.1039/c2cp42914d |
436.
Wang,
L. C.;
Khazaneh,
M. T.;
Widmann,
D.;
Behm,
R. J.
TAP reactor studies of the oxidizing capability of CO2 on a Au/CeO2 catalyst - A first step toward identifying a redox mechanism in the Reverse Water-Gas Shift reaction
J. Catal., 302 :20–30
2013
TAP reactor studies of the oxidizing capability of CO2 on a Au/CeO2 catalyst - A first step toward identifying a redox mechanism in the Reverse Water-Gas Shift reaction
J. Catal., 302 :20–30
2013
DOI: | https://doi.org/10.1016/j.jcat.2013.02.021 |
435.
Reichert,
R.;
Schnaidt,
J.;
Behm,
R. J.
The Influence of Reactive Side Products in Electrocatalytic Reactions: Methanol Oxidation as Case Study
Chemphyschem, 14 (16) :3678–3681
2013
The Influence of Reactive Side Products in Electrocatalytic Reactions: Methanol Oxidation as Case Study
Chemphyschem, 14 (16) :3678–3681
2013
DOI: | https://doi.org/10.1002/cphc.201300726 |
434.
Buchner,
F.;
Forster-Tonigold,
K.;
Uhl,
B.;
Alwast,
D.;
Wagner,
N.;
Farkhondeh,
H.;
Groß,
A.;
Behm,
R. J.
Toward the Microscopic Identification of Anions and Cations at the Ionic Liquid I Ag(111) Interface: A Combined Experimental and Theoretical Investigation
Acs Nano, 7 (9) :7773–7784
2013
Toward the Microscopic Identification of Anions and Cations at the Ionic Liquid I Ag(111) Interface: A Combined Experimental and Theoretical Investigation
Acs Nano, 7 (9) :7773–7784
2013
DOI: | https://doi.org/10.1021/nn4026417 |
2012
433.
Zhao,
W.;
Behm,
R. J.
Complete Quantitative Online Analysis of Methanol Electrooxidation Products via Electron Impact and Electrospray Ionization Mass Spectrometry
Anal. Chem., 84 (13) :5479–5483
2012
Complete Quantitative Online Analysis of Methanol Electrooxidation Products via Electron Impact and Electrospray Ionization Mass Spectrometry
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Directed assembly of Ru nanoclusters on Ru(0001)-supported graphene: STM studies and atomistic modeling
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Directed assembly of Ru nanoclusters on Ru(0001)-supported graphene: STM studies and atomistic modeling
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Electro-Oxidation of Ethylene Glycol on a Pt-Film Electrode Studied by Combined in Situ Infrared Spectroscopy and Online Mass Spectrometry
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Electro-Oxidation of Ethylene Glycol on a Pt-Film Electrode Studied by Combined in Situ Infrared Spectroscopy and Online Mass Spectrometry
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Electrooxidation of 1-Propanol on Pt - Mechanistic Insights from a Spectro-Electrochemical Study using Isotope Labeling
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Electrooxidation of 1-Propanol on Pt - Mechanistic Insights from a Spectro-Electrochemical Study using Isotope Labeling
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Electrooxidation of acetaldehyde on a carbon supported Pt catalyst at elevated temperature/pressure: An on-line differential electrochemical mass spectrometry study
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Electrooxidation of acetaldehyde on a carbon supported Pt catalyst at elevated temperature/pressure: An on-line differential electrochemical mass spectrometry study
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Ex situ testing method to characterize cathode catalysts degradation under simulated start-up/shut-down conditions - A contribution to polymer electrolyte membrane fuel cell benchmarking
J Power Sources, 215 :266–273
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Ex situ testing method to characterize cathode catalysts degradation under simulated start-up/shut-down conditions - A contribution to polymer electrolyte membrane fuel cell benchmarking
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Formation, atomic distribution and mixing energy in two-dimensional PdxAg1-x surface alloys on Pd(111)
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Formation, atomic distribution and mixing energy in two-dimensional PdxAg1-x surface alloys on Pd(111)
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Growth of PtRu Clusters on Ru(0001)-Supported Monolayer Graphene Films
Chemphyschem, 13 (14) :3313–3319
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Growth of PtRu Clusters on Ru(0001)-Supported Monolayer Graphene Films
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High surface area crystalline titanium dioxide: potential and limits in electrochemical energy storage and catalysis
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High surface area crystalline titanium dioxide: potential and limits in electrochemical energy storage and catalysis
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Influence of the catalyst loading on the activity and the CO selectivity of supported Ru catalysts in the selective methanation of CO in CO2 containing feed gases
Catal. Today, 181 (1) :40–51
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Influence of the catalyst loading on the activity and the CO selectivity of supported Ru catalysts in the selective methanation of CO in CO2 containing feed gases
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Interaction of CO and deuterium with bimetallic, monolayer Pt island / film covered Ru(0001) surfaces
Phys. Chem. Chem. Phys., 14 (31) :10919–10934
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Interaction of CO and deuterium with bimetallic, monolayer Pt island / film covered Ru(0001) surfaces
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Interaction of CO with structurally well-defined monolayer PtAu/Pt(111) surface alloys
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Interaction of CO with structurally well-defined monolayer PtAu/Pt(111) surface alloys
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New Insights into the Mechanism and Kinetics of Adsorbed CO Electrooxidation on Platinum: Online Mass Spectrometry and Kinetic Monte Carlo Simulation Studies
J Phys Chem C, 116 (20) :11040–11053
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New Insights into the Mechanism and Kinetics of Adsorbed CO Electrooxidation on Platinum: Online Mass Spectrometry and Kinetic Monte Carlo Simulation Studies
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On the Role of Residual Ag in Nanoporous Au Catalysts for CO Oxidation: A Combined Microreactor and TAP Reactor Study
Chemcatchem, 4 (2) :251–259
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On the Role of Residual Ag in Nanoporous Au Catalysts for CO Oxidation: A Combined Microreactor and TAP Reactor Study
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Oxidation of an Organic Adlayer: A Bird's Eye View
J. Am. Chem. Soc., 134 (21) :8817–8822
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Oxidation of an Organic Adlayer: A Bird's Eye View
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The adsorption of oxygen and coadsorption of CO and oxygen on structurally well-defined PdAg surface alloys
ChemPhysChem, 13 (15) :3516–25
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The adsorption of oxygen and coadsorption of CO and oxygen on structurally well-defined PdAg surface alloys
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The role of surface defects in large organic molecule adsorption: substrate configuration effects
Phys. Chem. Chem. Phys., 14 (30) :10726–10731
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The role of surface defects in large organic molecule adsorption: substrate configuration effects
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Active Oxygen on a Au/TiO2 Catalyst: Formation, Stability, and CO Oxidation Activity
Angew Chem Int Edit, 50 (43) :10241–10245
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Active Oxygen on a Au/TiO2 Catalyst: Formation, Stability, and CO Oxidation Activity
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Adsorption of Supramolecular Building Blocks on Graphite: A Force Field and Density Functional Theory Study
Chemphyschem, 12 (12) :2242–2245
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Adsorption of Supramolecular Building Blocks on Graphite: A Force Field and Density Functional Theory Study
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Controlled Surface Structure for In Situ ATR-FTIRS Studies Using Preferentially Shaped Pt Nanocrystals
Electrocatalysis, 2 (2) :69–74
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Controlled Surface Structure for In Situ ATR-FTIRS Studies Using Preferentially Shaped Pt Nanocrystals
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Dynamic studies of CO oxidation on nanoporous Au using a TAP reactor
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Dynamic studies of CO oxidation on nanoporous Au using a TAP reactor
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Electrochemistry at Ru(0001) in a flowing CO-saturated electrolyte-reactive and inert adlayer phases
Phys. Chem. Chem. Phys., 13 (13) :6010–6021
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Electrochemistry at Ru(0001) in a flowing CO-saturated electrolyte-reactive and inert adlayer phases
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Electrooxidation of glycerol studied by combined in situ IR spectroscopy and online mass spectrometry under continuous flow conditions
J. Electroanal. Chem., 661 (1) :250–264
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Electrooxidation of glycerol studied by combined in situ IR spectroscopy and online mass spectrometry under continuous flow conditions
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Fabrication of Pt/Ru Nanoparticle Pair Arrays with Controlled Separation and their Electrocatalytic Properties
Acs Nano, 5 (4) :2547–2558
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Fabrication of Pt/Ru Nanoparticle Pair Arrays with Controlled Separation and their Electrocatalytic Properties
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Growth of an oligopyridine adlayer on Ag(100) - A scanning tunnelling microscopy study
Phys. Chem. Chem. Phys., 13 (46) :20724–20728
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Growth of an oligopyridine adlayer on Ag(100) - A scanning tunnelling microscopy study
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Hierarchical Interactions and Their Influence upon the Adsorption of Organic Molecules on a Graphene Film
J. Am. Chem. Soc., 133 (24) :9208–9211
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Hierarchical Interactions and Their Influence upon the Adsorption of Organic Molecules on a Graphene Film
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High Fidelity Self-Recognition of Isomeric Oligopyridines in Binary 2D Self-Assembly and Its Application for Separation
Chem-eur J, 17 (28) :7831–7836
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High Fidelity Self-Recognition of Isomeric Oligopyridines in Binary 2D Self-Assembly and Its Application for Separation
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Imaging an Ionic Liquid Adlayer by Scanning Tunneling Microscopy at the Solid vertical bar Vacuum Interface
Chemphyschem, 12 (14) :2565–2567
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Imaging an Ionic Liquid Adlayer by Scanning Tunneling Microscopy at the Solid vertical bar Vacuum Interface
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Interaction of Mass Transport and Reaction Kinetics during Electrocatalytic CO Oxidation in a Thin-Layer Flow Cell
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Interaction of Mass Transport and Reaction Kinetics during Electrocatalytic CO Oxidation in a Thin-Layer Flow Cell
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Intermolecular vs molecule-substrate interactions: A combined STM and theoretical study of supramolecular phases on graphene/Ru(0001)
Beilstein J. Nanotechnol., 2 :365–373
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Intermolecular vs molecule-substrate interactions: A combined STM and theoretical study of supramolecular phases on graphene/Ru(0001)
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Mass transport effects in CO adsorption and continuous CO electrooxidation over regular arrays of Pt nanostructures on planar glassy carbon supports
J. Electroanal. Chem., 662 (1, SI) :157–168
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Mass transport effects in CO adsorption and continuous CO electrooxidation over regular arrays of Pt nanostructures on planar glassy carbon supports
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Molecular approaches towards mixed metal oxides and their behaviour in mixed oxide support Au catalysts for CO oxidation
Dalton Trans., 40 (13) :3269–3286
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Molecular approaches towards mixed metal oxides and their behaviour in mixed oxide support Au catalysts for CO oxidation
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Nanostructured, mesoporous Au/TiO2 model catalysts – structure, stability and catalytic properties
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Nanostructured, mesoporous Au/TiO2 model catalysts – structure, stability and catalytic properties
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Reaction Intermediates and Side Products in the Methanation of CO and CO2 over Supported Ru Catalysts in H-2-Rich Reformate Gases
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Reaction Intermediates and Side Products in the Methanation of CO and CO2 over Supported Ru Catalysts in H-2-Rich Reformate Gases
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Segregation and Stability in Surface Alloys: PdxRu1-x/Ru(0001) and PtxRu1-x/Ru(0001)
Chemphyschem, 12 (6) :1148–1154
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Segregation and Stability in Surface Alloys: PdxRu1-x/Ru(0001) and PtxRu1-x/Ru(0001)
Chemphyschem, 12 (6) :1148–1154
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The interaction of CO with PdAg/Pd(111) surface alloys-a case study of ensemble effects on a bimetallic surface
Phys. Chem. Chem. Phys., 13 (22) :10741–10754
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The interaction of CO with PdAg/Pd(111) surface alloys-a case study of ensemble effects on a bimetallic surface
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The Role of Reactive Reaction Intermediates in Two-Step Heterogeneous Electrocatalytic Reactions: A Model Study
Fuel Cells, 11 (4, SI) :501–510
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The Role of Reactive Reaction Intermediates in Two-Step Heterogeneous Electrocatalytic Reactions: A Model Study
Fuel Cells, 11 (4, SI) :501–510
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What drives the selectivity for CO methanation in the methanation of CO2-rich reformate gases on supported Ru catalysts?
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What drives the selectivity for CO methanation in the methanation of CO2-rich reformate gases on supported Ru catalysts?
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Activity, selectivity, and adsorbed reaction intermediates/reaction side products in the selective methanation of CO in reformate gases on supported Ru catalysts
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Activity, selectivity, and adsorbed reaction intermediates/reaction side products in the selective methanation of CO in reformate gases on supported Ru catalysts
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Coadsorption of hydrogen and CO on well-defined Pt35Ru65/Ru(0001) surface alloys—site specificity vs. adsorbate–adsorbate interactions
Phys. Chem. Chem. Phys., 12 (33) :9801–9810
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Coadsorption of hydrogen and CO on well-defined Pt35Ru65/Ru(0001) surface alloys—site specificity vs. adsorbate–adsorbate interactions
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Concentration and Coverage Dependent Adlayer Structures: From Two-Dimensional Networks to Rotation in a Bearing
J Phys Chem C, 114 (2) :1268–1277
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Concentration and Coverage Dependent Adlayer Structures: From Two-Dimensional Networks to Rotation in a Bearing
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Electrocatalysis and transport effects on nanostructured Pt/GC electrodes
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Electrocatalysis and transport effects on nanostructured Pt/GC electrodes
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Electrooxidation of ethylene glycol on a carbon-supported Pt catalyst at elevated temperatures and pressure: A high-temperature/high-pressure DEMS study
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Electrooxidation of ethylene glycol on a carbon-supported Pt catalyst at elevated temperatures and pressure: A high-temperature/high-pressure DEMS study
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Entropic stabilization of large adsorbates on weakly binding substrates-a thermal desorption and scanning tunneling microscopy study
Phys. Chem. Chem. Phys., 12 (4) :818–822
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Entropic stabilization of large adsorbates on weakly binding substrates-a thermal desorption and scanning tunneling microscopy study
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Ethanol, Acetaldehyde and Acetic Acid Adsorption/Electrooxidation on a Pt Thin Film Electrode under Continuous Electrolyte Flow: An in Situ ATR-FTIRS Flow Cell Study
J Phys Chem C, 114 (21) :9850–9864
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Ethanol, Acetaldehyde and Acetic Acid Adsorption/Electrooxidation on a Pt Thin Film Electrode under Continuous Electrolyte Flow: An in Situ ATR-FTIRS Flow Cell Study
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From adlayer islands to surface alloy: structural and chemical changes on bimetallic PtRu/Ru(0001) surfaces
ChemPhysChem, 11 (14) :3123–3132
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From adlayer islands to surface alloy: structural and chemical changes on bimetallic PtRu/Ru(0001) surfaces
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Influence of H-2, CO2 and H2O on the activity and deactivation behavior of Au/CeO2 catalysts in the water gas shift reaction at 300 degrees C
Appl Catal B-environ, 95 (1-2) :57–70
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Influence of H-2, CO2 and H2O on the activity and deactivation behavior of Au/CeO2 catalysts in the water gas shift reaction at 300 degrees C
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Mesoscopic Transport Effects in Electrocatalytic Reactions
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