Publikationen von Professor Dr. Behm
2018
582.
Helen,
M.;
Schindler,
S.;
Behm,
R. J.;
Danzer,
M.;
Fichtner,
M.;
Reddy,
M. A.
Insight into Sulfur Confined in Ultramicroporous Carbon
Acs Omega, 3 (9) :11290–11299
2018
Insight into Sulfur Confined in Ultramicroporous Carbon
Acs Omega, 3 (9) :11290–11299
2018
DOI: | https://doi.org/10.1021/acsomega.8b01681 |
581.
Chen,
Z.;
Kim,
G.-T.;
Guang,
Y.;
Bresser,
D.;
Huang,
Y.;
Copley,
M.;
Behm,
R. J.;
Passerini,
S.;
Shen,
Z.
Manganese phosphate coated Li[Ni0.6Co0.2Mn0.2]O-2 cathode material: Towards superior cycling stability at elevated temperature and high voltage
J Power Sources, 402 :263–271
2018
Manganese phosphate coated Li[Ni0.6Co0.2Mn0.2]O-2 cathode material: Towards superior cycling stability at elevated temperature and high voltage
J Power Sources, 402 :263–271
2018
DOI: | https://doi.org/10.1016/j.jpowsour.2018.09.049 |
580.
Sakaushi,
K.;
Eckardt,
M.;
Lyalin,
A.;
Taketsugu,
T.;
Behm,
R. J.;
Uosaki,
K.
Microscopic Electrode Processes in the Four-Electron Oxygen Reduction on Highly Active Carbon-Based Electrocatalysts
Acs Catal, 8 (9) :8162–8176
2018
Microscopic Electrode Processes in the Four-Electron Oxygen Reduction on Highly Active Carbon-Based Electrocatalysts
Acs Catal, 8 (9) :8162–8176
2018
DOI: | https://doi.org/10.1021/acscatal.8b01953 |
579.
Chen,
Z.;
Kim,
G.-T.;
Bresser,
D.;
Asenbauer,
J.;
Jeong,
S.;
Copley,
M.;
Behm,
R. J.;
Shen,
Z.;
Passerini,
S.
MnPO4-Coated Li(Ni0.4Co0.2Mn0.4)O-2 for Lithium(-Ion) Batteries with Outstanding Cycling Stability and Enhanced Lithiation Kinetics
Adv. Energy Mater., 8 (27)
2018
MnPO4-Coated Li(Ni0.4Co0.2Mn0.4)O-2 for Lithium(-Ion) Batteries with Outstanding Cycling Stability and Enhanced Lithiation Kinetics
Adv. Energy Mater., 8 (27)
2018
DOI: | https://doi.org/10.1002/aenm.201801573 |
578.
Gebauer,
C.;
Behm,
R. J.
On the Role of the Support in Pt Anode Catalyst Degradation under Simulated H-2 Fuel Starvation Conditions
J. Electrochem. Soc., 165 (15) :J3342
2018
On the Role of the Support in Pt Anode Catalyst Degradation under Simulated H-2 Fuel Starvation Conditions
J. Electrochem. Soc., 165 (15) :J3342
2018
DOI: | https://doi.org/10.1149/2.0461815jes |
577.
Wang,
L. C.;
Widmann,
D.;
Behm,
R. J.
Oxygen Adsorption and Low-Temperature CO Oxidation on a Nanoporous Au Catalyst: Reaction Mechanism and Foreign Metal Effects
Top Catal, 61 (5-6, SI) :446–461
2018
Oxygen Adsorption and Low-Temperature CO Oxidation on a Nanoporous Au Catalyst: Reaction Mechanism and Foreign Metal Effects
Top Catal, 61 (5-6, SI) :446–461
2018
DOI: | https://doi.org/10.1007/s11244-017-0881-2 |
576.
Eckardt,
M.;
Gebauer,
C.;
Wassner,
M.;
Huesing,
N.;
Behm,
R. J.
Oxygen reduction reaction activity and long-term stability of platinum nanoparticles supported on titania and titania-carbon nanotube composites
J Power Sources, 400 :580–591
2018
Oxygen reduction reaction activity and long-term stability of platinum nanoparticles supported on titania and titania-carbon nanotube composites
J Power Sources, 400 :580–591
2018
DOI: | https://doi.org/10.1016/j.jpowsour.2018.08.036 |
575.
Schilling,
M.;
Behm,
R. J.
Partial dissociation of water on Ru(0001) at low temperatures - Adsorption, structure formation and hydrogen passivation effects
Surf. Sci., 674 :32–39
2018
Partial dissociation of water on Ru(0001) at low temperatures - Adsorption, structure formation and hydrogen passivation effects
Surf. Sci., 674 :32–39
2018
DOI: | https://doi.org/10.1016/j.susc.2018.03.014 |
574.
Ulmer,
U.;
Oertel,
D.;
Minella,
C. B.;
Bergfeldt,
T.;
Dittmeyer,
R.;
Behm,
R. J.;
Fichtnet,
M.
Performance Improvement of V-Fe-Cr-Ti Solid State Hydrogen Storage Materials in Impure Hydrogen Gas
Acs Appl Mater Inter, 10 (2) :1662–1671
2018
Performance Improvement of V-Fe-Cr-Ti Solid State Hydrogen Storage Materials in Impure Hydrogen Gas
Acs Appl Mater Inter, 10 (2) :1662–1671
2018
DOI: | https://doi.org/10.1021/acsami.7b13541 |
573.
Dinc,
M.;
Basan,
H.;
Hummel,
T.;
Mueller,
M.;
Sobek,
H.;
Rapp,
I.;
Behm,
R. J.;
Linden,
M.
Selective Binding of Inhibitor-Assisted Surface-Imprinted Core/Shell Microbeads in Protein Mixtures
Chemistryselect, 3 (16) :4277–4282
2018
Selective Binding of Inhibitor-Assisted Surface-Imprinted Core/Shell Microbeads in Protein Mixtures
Chemistryselect, 3 (16) :4277–4282
2018
DOI: | https://doi.org/10.1002/slct.201800129 |
572.
Abdel-Mageed,
A. M.;
Widmann,
D.;
Olesen,
S. E.;
Chorkendorff,
I.;
Behm,
R. J.
Selective CO Methanation on Highly Active Ru/TiO2 Catalysts: Identifying the Physical Origin of the Observed Activation/Deactivation and Loss in Selectivity
Acs Catal, 8 (6) :5399–5414
2018
Selective CO Methanation on Highly Active Ru/TiO2 Catalysts: Identifying the Physical Origin of the Observed Activation/Deactivation and Loss in Selectivity
Acs Catal, 8 (6) :5399–5414
2018
DOI: | https://doi.org/10.1021/acscatal.8b00384 |
571.
Lin,
X.-M.;
Mu,
X.;
Gao,
P.;
Behm,
R. J.;
Fichtner,
M.
Spectroscopic investigations on the origin of the improved performance of composites of nanoparticles/graphene sheets as anodes for lithium ion batteries
Carbon, 127 :47–56
2018
Spectroscopic investigations on the origin of the improved performance of composites of nanoparticles/graphene sheets as anodes for lithium ion batteries
Carbon, 127 :47–56
2018
DOI: | https://doi.org/10.1016/j.carbon.2017.10.076 |
570.
Beckord,
S.;
Brimaud,
S.;
Behm,
R. J.
Stability and ORR performance of a well-defined bimetallic Ag70Pt30/Pt(111) monolayer surface alloy electrode - Probing the de-alloying at an atomic scale
Electrochim. Acta, 259 :762–771
2018
Stability and ORR performance of a well-defined bimetallic Ag70Pt30/Pt(111) monolayer surface alloy electrode - Probing the de-alloying at an atomic scale
Electrochim. Acta, 259 :762–771
2018
DOI: | https://doi.org/10.1016/j.electacta.2017.10.146 |
569.
Buchner,
F.;
Uhl,
B.;
Forster-Tonigold,
K.;
Bansmann,
J.;
Groß,
A.;
Behm,
R. J.
Structure formation and surface chemistry of ionic liquids on model electrode surfaces — model studies for the electrode | electrolyte interface in Li-ion batteries
J. Chem. Phys., 148 (19) :193821
2018
Structure formation and surface chemistry of ionic liquids on model electrode surfaces — model studies for the electrode | electrolyte interface in Li-ion batteries
J. Chem. Phys., 148 (19) :193821
2018
DOI: | https://doi.org/10.1063/1.5012878 |
568.
Kim,
J.;
Buchner,
F.;
Behm,
R. J.
Temperature-dependent insertion and adsorption of lithium on spinel Li4Ti5O12(111) thin films - an angle-resolved XPS study
Phys. Chem. Chem. Phys., 20 (27) :18319–18327
2018
Temperature-dependent insertion and adsorption of lithium on spinel Li4Ti5O12(111) thin films - an angle-resolved XPS study
Phys. Chem. Chem. Phys., 20 (27) :18319–18327
2018
DOI: | https://doi.org/10.1039/c8cp01851k |
567.
Beckord,
S.;
Brimaud,
S.;
Behm,
R. J.
The performance of structurally well-defined AgxPt1-x/Pt(111) surface alloys in the oxygen reduction reaction - An atomic-scale picture
J. Electroanal. Chem., 819 (SI) :401–409
2018
The performance of structurally well-defined AgxPt1-x/Pt(111) surface alloys in the oxygen reduction reaction - An atomic-scale picture
J. Electroanal. Chem., 819 (SI) :401–409
2018
DOI: | https://doi.org/10.1016/j.jelechem.2017.11.038 |
566.
Zhao-Karger,
Z.;
Liu,
R.;
Dai,
W.;
Li,
Z.;
Vinayan,
B. P.;
Minella,
C. B.;
Yu,
X.;
Manthiram,
A.;
Behm,
R. J.;
Ruben,
M.;
Fichtner,
M.
Toward Highly Reversible Magnesium-Sulfur Batteries with Efficient and Practical Mg[B(hfip)(4)](2) Electrolyte
Acs Energy Letters, 3 (8) :2005–2013
2018
Toward Highly Reversible Magnesium-Sulfur Batteries with Efficient and Practical Mg[B(hfip)(4)](2) Electrolyte
Acs Energy Letters, 3 (8) :2005–2013
2018
DOI: | https://doi.org/10.1021/acsenergylett.8b01061 |
2017
565.
Schnaidt,
J.;
Beckord,
S.;
Engstfeld,
A. K.;
Klein,
J.;
Brimaud,
S.;
Behm,
R. J.
A combined UHV-STM-flow cell set-up for electrochemical/electrocatalytic studies of structurally well-defined UHV prepared model electrodes
Phys. Chem. Chem. Phys., 19 (6) :4166–4178
2017
A combined UHV-STM-flow cell set-up for electrochemical/electrocatalytic studies of structurally well-defined UHV prepared model electrodes
Phys. Chem. Chem. Phys., 19 (6) :4166–4178
2017
DOI: | https://doi.org/10.1039/c6cp06051j |
564.
Gao,
P.;
Chen,
Z.;
Zhao-Karger,
Z.;
Mueller,
J. E.;
Jung,
C.;
Klyatskaya,
S.;
Fuhr,
O.;
Jacob,
T.;
Behm,
R. J.;
Ruben,
M.;
Fichtner,
M.
A Porphyrin Complex as a Self-Conditioned Electrode Material for High-Performance Energy Storage
Angew Chem Int Edit, 56 (35) :10341–10346
2017
A Porphyrin Complex as a Self-Conditioned Electrode Material for High-Performance Energy Storage
Angew Chem Int Edit, 56 (35) :10341–10346
2017
DOI: | https://doi.org/10.1002/anie.201702805 |
563.
Abdel-Mageed,
A. M.;
Kucerova,
G.;
Bansmann,
J.;
Behm,
R. J.
Active au species during the low-temperature water gas shift reaction on Au/CeO2: a time-resolved operando XAS and DRIFTS study
ACS Catal., 7 (10) :6471–6484
2017
Active au species during the low-temperature water gas shift reaction on Au/CeO2: a time-resolved operando XAS and DRIFTS study
ACS Catal., 7 (10) :6471–6484
2017
DOI: | https://doi.org/10.1021/acscatal.7b01563 |
562.
Widmann,
D.;
Lehnert,
F.;
Gu,
D.;
Schueth,
F.;
Behm,
R. J.
Avoiding Self-Poisoning: A Key Feature for the High Activity of Au/Mg(OH)(2) Catalysts in Continuous Low-Temperature CO Oxidation
Angew Chem Int Edit, 56 (32) :9597–9602
2017
Avoiding Self-Poisoning: A Key Feature for the High Activity of Au/Mg(OH)(2) Catalysts in Continuous Low-Temperature CO Oxidation
Angew Chem Int Edit, 56 (32) :9597–9602
2017
DOI: | https://doi.org/10.1002/anie.201702178 |
561.
Mancera,
L. A.;
Engstfeld,
A. K.;
Bensch,
A.;
Behm,
R. J.;
Groß,
A.
Challenges in bimetallic multilayer structure formation: Pt growth on Cu monolayers on Ru(0001)
Phys. Chem. Chem. Phys., 19 (35) :24100–24114
2017
Challenges in bimetallic multilayer structure formation: Pt growth on Cu monolayers on Ru(0001)
Phys. Chem. Chem. Phys., 19 (35) :24100–24114
2017
DOI: | https://doi.org/10.1039/c7cp03320f |
560.
Thieu,
D. T.;
Hammad,
M.;
Bhatia,
H.;
Chakravadhanula,
V. S. K.;
Behm,
R. J.;
Fichtner,
M.
CuF2 as Reversible Cathode for Fluoride Ion Batteries
Adv. Funct. Mater., 27 (31)
2017
CuF2 as Reversible Cathode for Fluoride Ion Batteries
Adv. Funct. Mater., 27 (31)
2017
DOI: | https://doi.org/10.1002/adfm.201701051 |
559.
Behm,
R. J.
Dynamics of the Interaction of Formic Acid with a Polycrystalline Pt Film Electrode: a Time-Resolved ATR-FTIR Spectroscopy Study at Low Potentials and Temperatures
Electrocatalysis, 8 (6, SI) :616–629
2017
Dynamics of the Interaction of Formic Acid with a Polycrystalline Pt Film Electrode: a Time-Resolved ATR-FTIR Spectroscopy Study at Low Potentials and Temperatures
Electrocatalysis, 8 (6, SI) :616–629
2017
DOI: | https://doi.org/10.1007/s12678-017-0392-8 |
558.
Kucerova,
G.;
Strunk,
J.;
Muhler,
M.;
Behm,
R. J.
Effect of titania surface modification of mesoporous silica SBA-15 supported Au catalysts: Activity and stability in the CO oxidation reaction
J. Catal., 356 :214–228
2017
Effect of titania surface modification of mesoporous silica SBA-15 supported Au catalysts: Activity and stability in the CO oxidation reaction
J. Catal., 356 :214–228
2017
DOI: | https://doi.org/10.1016/j.jcat.2017.09.017 |
557.
Behm,
R. J.
Electrooxidation of formic acid on a polycrystalline Au film electrode-A comparison with mass transport limited bulk CO oxidation and kinetically limited oxalic acid oxidation
J. Electroanal. Chem., 800 :60–76
2017
Electrooxidation of formic acid on a polycrystalline Au film electrode-A comparison with mass transport limited bulk CO oxidation and kinetically limited oxalic acid oxidation
J. Electroanal. Chem., 800 :60–76
2017
DOI: | https://doi.org/10.1016/j.jelechem.2016.11.029 |
556.
Hasa,
I.;
Qin,
B.;
Buchholz,
D.;
Behm,
R. J.;
Passerini,
S.
Excellent Cycling Stability and Superior Rate Capability of Na3V2(PO4)(3) Cathodes Enabled by Nitrogen-Doped Carbon Interpenetration for Sodium-Ion Batteries
Chemelectrochem, 4 (5) :1256–1263
2017
Excellent Cycling Stability and Superior Rate Capability of Na3V2(PO4)(3) Cathodes Enabled by Nitrogen-Doped Carbon Interpenetration for Sodium-Ion Batteries
Chemelectrochem, 4 (5) :1256–1263
2017
DOI: | https://doi.org/10.1002/celc.201700053 |
555.
Widmann,
D.;
Wittmann,
M.;
Lehnert,
F.;
Gu,
D.;
Schueth,
F.;
Behm,
R. J.
High activity and negative apparent activation energy in low-temperature CO oxidation -present on Au/Mg(OH)(2), absent on Au/TiO2
Catal Sci Technol, 7 (18) :4145–4161
2017
High activity and negative apparent activation energy in low-temperature CO oxidation -present on Au/Mg(OH)(2), absent on Au/TiO2
Catal Sci Technol, 7 (18) :4145–4161
2017
DOI: | https://doi.org/10.1039/c7cy00722a |
554.
Bansmann,
J.;
Kucerova,
G.;
Abdel-Mageed,
A. M.;
El-Moemen,
A. A.;
Behm,
R. J.
Influence of re-activation and ongoing CO oxidation reaction on the chemical and electronic properties of Au on a Au/CeO 2 catalyst: a XANES study at the Au L III edge
J. Electron. Spectrosc. Relat. Phenom., 220 :86–90
2017
Influence of re-activation and ongoing CO oxidation reaction on the chemical and electronic properties of Au on a Au/CeO 2 catalyst: a XANES study at the Au L III edge
J. Electron. Spectrosc. Relat. Phenom., 220 :86–90
2017
DOI: | https://doi.org/10.1016/j.elspec.2017.01.002 |
553.
Sakong,
S.;
Fischer,
J. M.;
Mahlberg,
D.;
Behm,
R. J.;
Groß,
A.
Influence of Step and Island Edges on Local Adsorption Properties: Hydrogen Adsorption on Pt Monolayer Island Modified Ru(0001) Electrodes
Electrocatalysis, 8 (6, SI) :530–539
2017
Influence of Step and Island Edges on Local Adsorption Properties: Hydrogen Adsorption on Pt Monolayer Island Modified Ru(0001) Electrodes
Electrocatalysis, 8 (6, SI) :530–539
2017
DOI: | https://doi.org/10.1007/s12678-017-0354-1 |
552.
Widmann,
D.;
Behm,
R. J.
Influence of TiO2 Bulk Defects on CO Adsorption and CO Oxidation on Au/TiO2: Electronic Metal-Support Interactions (EMSIs) in Supported Au Catalysts
Acs Catal, 7 (4) :2339–2345
2017
Influence of TiO2 Bulk Defects on CO Adsorption and CO Oxidation on Au/TiO2: Electronic Metal-Support Interactions (EMSIs) in Supported Au Catalysts
Acs Catal, 7 (4) :2339–2345
2017
DOI: | https://doi.org/10.1021/acscatal.7b00251 |
551.
Steinhauer,
M.;
Heim,
C.;
Behm,
R. J.;
Wagner,
N.;
Friedrich,
K. A.
Insights into solid electrolyte interphase formation on alternative anode materials in lithium-ion batteries
J. Appl. Electrochem., 47 (2) :249–259
2017
Insights into solid electrolyte interphase formation on alternative anode materials in lithium-ion batteries
J. Appl. Electrochem., 47 (2) :249–259
2017
DOI: | https://doi.org/10.1007/s10800-016-1032-3 |
550.
Elia,
G. A.;
Hasa,
I.;
Greco,
G.;
Marquardt,
K.;
Hoeppner,
K.;
Behm,
R. J.;
Hoell,
A.;
Passerini,
S.;
Hahn,
R.
Insights into the reversibility of aluminum graphite batteries
J. Mater. Chem.a, 5 (20) :9682–9690
2017
Insights into the reversibility of aluminum graphite batteries
J. Mater. Chem.a, 5 (20) :9682–9690
2017
DOI: | https://doi.org/10.1039/c7ta01018d |
549.
Buchner,
F.;
Kim,
J.;
Adler,
C.;
Bozorgchenani,
M.;
Bansmann,
J.;
Behm,
R. J.
Intercalation and Deintercalation of Lithium at the Ionic Liquid–Graphite(0001) Interface
The Journal of Physical Chemistry Letters, 8 (23) :5804–5809
2017
Intercalation and Deintercalation of Lithium at the Ionic Liquid–Graphite(0001) Interface
The Journal of Physical Chemistry Letters, 8 (23) :5804–5809
2017
DOI: | https://doi.org/10.1021/acs.jpclett.7b02530 |
548.
Minella,
C. B.;
Gao,
P.;
Zhao-Karger,
Z.;
Mu,
X.;
Pfeifer,
M.;
Chakravadhanula,
V. S. K.;
Behm,
R. J.;
Fichtner,
M.
Interlayer-Expanded Vanadium Oxychloride as an Electrode Material for Magnesium-Based Batteries
Chemelectrochem, 4 (3) :738–745
2017
Interlayer-Expanded Vanadium Oxychloride as an Electrode Material for Magnesium-Based Batteries
Chemelectrochem, 4 (3) :738–745
2017
DOI: | https://doi.org/10.1002/celc.201700034 |
547.
Mancini,
M.;
Fleischhammer,
M.;
Fleischmann,
S.;
Behm,
R. J.;
Axmann,
P.;
Wohlfahrt-Mehrens,
M.
Investigation on the Thermal Stability of Li2MnSiO4-Based Cathodes for Li-ion Batteries: Effect of Electrolyte and State of Charge
Energy Technology, 5 (9) :1561–1570
2017
Investigation on the Thermal Stability of Li2MnSiO4-Based Cathodes for Li-ion Batteries: Effect of Electrolyte and State of Charge
Energy Technology, 5 (9) :1561–1570
2017
DOI: | https://doi.org/10.1002/ente.201600780 |
546.
Minella,
C. B.;
Gao,
P.;
Zhao-Karger,
Z.;
Behm,
R. J.;
Fichtner,
M.
Lithium-Magnesium Hybrid Battery with Vanadium Oxychloride as Electrode Material
Chemistryselect, 2 (25) :7558–7564
2017
Lithium-Magnesium Hybrid Battery with Vanadium Oxychloride as Electrode Material
Chemistryselect, 2 (25) :7558–7564
2017
DOI: | https://doi.org/10.1002/slct.201701595 |
545.
Dou,
X.;
Hasa,
I.;
Hekmatfar,
M.;
Behm,
R. J.;
Buchholz,
D.;
Passerini,
S.
Pectin, Hemicellulose, or Lignin? Impact of the Biowaste Source on the Performance of Hard Carbons for SodiumIon Batteries
Chemsuschem, 10 (12) :2668–2676
2017
Pectin, Hemicellulose, or Lignin? Impact of the Biowaste Source on the Performance of Hard Carbons for SodiumIon Batteries
Chemsuschem, 10 (12) :2668–2676
2017
DOI: | https://doi.org/10.1002/cssc.201700628 |
544.
Sandner,
T.;
Steinbach,
A. M.;
Behm,
R. J.
Silanization of Sapphire Surfaces for Optical Sensing Applications
Acs Sensors, 2 (4) :522–530
2017
Silanization of Sapphire Surfaces for Optical Sensing Applications
Acs Sensors, 2 (4) :522–530
2017
DOI: | https://doi.org/10.1021/acssensors.6b00786 |
543.
Tahir,
M. S.;
Weinberger,
M.;
Balasubramanian,
P.;
Behm,
R. J.;
Linden,
M.;
Wohlfahrt-Mehrens,
M.
Silicon carboxylate derived silicon oxycarbides as anodes for lithium ion batteries
J. Mater. Chem.a, 5 (21) :10190–10199
2017
Silicon carboxylate derived silicon oxycarbides as anodes for lithium ion batteries
J. Mater. Chem.a, 5 (21) :10190–10199
2017
DOI: | https://doi.org/10.1039/c7ta01843f |
542.
Weber,
I.;
Solla-Gullon,
J.;
Brimaud,
S.;
Feliu,
J. M.;
Behm,
R. J.
Structure, surface chemistry and electrochemical de-alloying of bimetallic PtxAg100-x nanoparticles: Quantifying the changes in the surface properties for adsorption and electrocatalytic transformation upon selective Ag removal
J. Electroanal. Chem., 793 (SI) :164–173
2017
Structure, surface chemistry and electrochemical de-alloying of bimetallic PtxAg100-x nanoparticles: Quantifying the changes in the surface properties for adsorption and electrocatalytic transformation upon selective Ag removal
J. Electroanal. Chem., 793 (SI) :164–173
2017
DOI: | https://doi.org/10.1016/j.jelechem.2016.11.062 |
541.
Zhang,
L.;
Reddy,
M. A.;
Gao,
P.;
Behm,
R. J.;
Fichtner,
M.
Study of all solid-state rechargeable fluoride ion batteries based on thin-film electrolyte
J Solid State Electr, 21 (5) :1243–1251
2017
Study of all solid-state rechargeable fluoride ion batteries based on thin-film electrolyte
J Solid State Electr, 21 (5) :1243–1251
2017
DOI: | https://doi.org/10.1007/s10008-016-3479-x |
540.
Wassner,
M.;
Eckardt,
M.;
Gebauer,
C.;
Bourret,
G. R.;
Huesing,
N.;
Behm,
R. J.
Synthesis and electrocatalytic performance of spherical core-shell tantalum (oxy)nitride@nitrided carbon composites in the oxygen reduction reaction
Electrochim. Acta, 227 :367–381
2017
Synthesis and electrocatalytic performance of spherical core-shell tantalum (oxy)nitride@nitrided carbon composites in the oxygen reduction reaction
Electrochim. Acta, 227 :367–381
2017
DOI: | https://doi.org/10.1016/j.electacta.2016.12.145 |
539.
Widmann,
D.;
Heenemann,
M.;
Schloegl,
R.;
Behm,
R. J.
The role of electronic metal-support interactions and its temperature dependence: CO adsorption and CO oxidation on Au/TiO2 catalysts in the presence of TiO2 bulk defects
J. Catal., 354 :46–60
2017
The role of electronic metal-support interactions and its temperature dependence: CO adsorption and CO oxidation on Au/TiO2 catalysts in the presence of TiO2 bulk defects
J. Catal., 354 :46–60
2017
DOI: | https://doi.org/10.1016/j.jcat.2017.07.029 |
538.
Qin,
B.;
Raccichini,
R.;
Behm,
R. J.;
Varzi,
A.;
Passerini,
S.
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A Lithium-Ion Battery with Enhanced Safety Prepared using an Environmentally Friendly Process
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A Novel Approach for Differential Electrochemical Mass Spectrometry Studies on the Decomposition of Ionic Liquids
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A Novel Approach for Differential Electrochemical Mass Spectrometry Studies on the Decomposition of Ionic Liquids
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Development of a water based process for stable conversion cathodes on the basis of FeF3
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Electrochemical Behavior of Layered Vanadium Oxychloride in Rechargeable Lithium Ion Batteries
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Electrochemical Characterization and Stability of AgxPt1-x/Pt(111) Surface Alloys
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Electrochemical Characterization and Stability of AgxPt1-x/Pt(111) Surface Alloys
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Ethanol oxidation on shape-controlled platinum nanoparticles at different pHs: A combined in situ IR spectroscopy and online mass spectrometry study
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How Temperature Affects the Mechanism of CO Oxidation on Au/TiO2: A Combined EPR and TAP Reactor Study of the Reactive Removal of TiO2 Surface Lattice Oxygen in Au/TiO2 by CO
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In-Depth Interfacial Chemistry and Reactivity Focused Investigation of Lithium-Imide- and Lithium-Imidazole-Based Electrolytes
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Infrared spectroscopy via substrate-integrated hollow waveguides: a powerful tool in catalysis research
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Infrared spectroscopy via substrate-integrated hollow waveguides: a powerful tool in catalysis research
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Inhibitor-assisted synthesis of silica-core microbeads with pepsin-imprinted nanoshells
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Interaction of a Self-Assembled Ionic Liquid Layer with Graphite(0001): A Combined Experimental and Theoretical Study
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Interaction of a Self-Assembled Ionic Liquid Layer with Graphite(0001): A Combined Experimental and Theoretical Study
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Interaction of CO with PtxAg1-x/Pt(111) surface alloys: More than dilution by Ag atoms
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Interaction of the ionic liquid [BMP][TFSA] with rutile TiO2(110) and coadsorbed lithium
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Interaction of the ionic liquid [BMP][TFSA] with rutile TiO2(110) and coadsorbed lithium
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Kinetic limitations in surface alloy formation: PtCu/Ru(0001)
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Methanol formation by CO2 hydrogenation on Au/ZnO catalysts - Effect of total pressure and influence of CO on the reaction characteristics
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Methanol synthesis via CO2 hydrogenation over a Au/ZnO catalyst: an isotope labelling study on the role of CO in the reaction process
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Methanol synthesis via CO2 hydrogenation over a Au/ZnO catalyst: an isotope labelling study on the role of CO in the reaction process
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Nitrogen Rich Hierarchically Organized Porous Carbon/Sulfur Composite Cathode Electrode for High Performance Li/S Battery: A Mechanistic Investigation by Operando Spectroscopic Studies
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Nitrogen Rich Hierarchically Organized Porous Carbon/Sulfur Composite Cathode Electrode for High Performance Li/S Battery: A Mechanistic Investigation by Operando Spectroscopic Studies
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Novel, Highly Conductive Pt/TiO2 Thin-Film Model Catalyst Electrodes: The Role of Metal-Support Interactions
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Novel, Highly Conductive Pt/TiO2 Thin-Film Model Catalyst Electrodes: The Role of Metal-Support Interactions
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Oxygen reduction and evolution in an ionic liquid ([BMP][TFSA]) based electrolyte: A model study of the cathode reactions in Mg-air batteries
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Nano Energy, 29 (SI) :136–148
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Performance of titanium oxynitrides in the electrocatalytic oxygen evolution reaction
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Performance study of magnesium-sulfur battery using a graphene based sulfur composite cathode electrode and a non-nucleophilic Mg electrolyte
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Performance study of magnesium-sulfur battery using a graphene based sulfur composite cathode electrode and a non-nucleophilic Mg electrolyte
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Selenium and selenium-sulfur cathode materials for high-energy rechargeable magnesium batteries
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Small Addition of Boron in Palladium Catalyst, Big Improvement in Fuel Cell's Performance: What May Interfacial Spectroelectrochemistry Tell?
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Small Addition of Boron in Palladium Catalyst, Big Improvement in Fuel Cell's Performance: What May Interfacial Spectroelectrochemistry Tell?
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Spherical Core-Shell Titanium (Oxy) nitride@Nitrided Carbon Composites as Catalysts for the Oxygen Reduction Reaction: Synthesis and Electrocatalytic Performance
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Spherical Core-Shell Titanium (Oxy) nitride@Nitrided Carbon Composites as Catalysts for the Oxygen Reduction Reaction: Synthesis and Electrocatalytic Performance
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Structure formation and thermal stability of mono- and multilayers of ethylene carbonate on Cu(111): a model study of the electrode|electrolyte interface
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Structure formation and thermal stability of mono- and multilayers of ethylene carbonate on Cu(111): a model study of the electrode|electrolyte interface
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The durability of stainless steel bondings
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The durability of stainless steel bondings
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The role of surface Pt on the coadsorption of hydrogen and CO on Pt monolayer film modified Ru(0001) surfaces
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The role of surface Pt on the coadsorption of hydrogen and CO on Pt monolayer film modified Ru(0001) surfaces
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Thermochemical Energy Storage through De/Hydrogenation of Organic Liquids: Reactions of Organic Liquids on Metal Hydrides
Acs Appl Mater Inter, 8 (22) :13993–14003
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Thermochemical Energy Storage through De/Hydrogenation of Organic Liquids: Reactions of Organic Liquids on Metal Hydrides
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VOCl as a Cathode for Rechargeable Chloride Ion Batteries
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VOCl as a Cathode for Rechargeable Chloride Ion Batteries
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Wie lange halten Edelstahlklebungen
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Ag on Pt(111): Changes in Electronic and CO Adsorption Properties upon PtAg/Pt(111) Monolayer Surface Alloy Formation
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Ag on Pt(111): Changes in Electronic and CO Adsorption Properties upon PtAg/Pt(111) Monolayer Surface Alloy Formation
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Au/TiO2 Photo(electro)catalysis: The Role of the Au Cocatalyst in Photoelectrochemical Water Splitting and Photocatalytic H-2 Evolution
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Au/TiO2 Photo(electro)catalysis: The Role of the Au Cocatalyst in Photoelectrochemical Water Splitting and Photocatalytic H-2 Evolution
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Borohydride electrooxidation over Pt/C, AuPt/C and Au/C catalysts: Partial reaction pathways and mixed potential formation
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CO2 Hydrogenation to Methanol on Supported Au Catalysts under Moderate Reaction Conditions: Support and Particle Size Effects
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CO2 Hydrogenation to Methanol on Supported Au Catalysts under Moderate Reaction Conditions: Support and Particle Size Effects
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Electroless deposition of Au/Pt/Pd nanoparticles on p-Si(111) for the light-induced hydrogen evolution reaction
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J Phys Chem C, 119 (33) :18859–18869
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Perfluoroalkyl-Phosphonic Acid Adsorption on Polycrystalline Platinum and Its Influence on the Oxygen Reduction Reaction
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Performance Improvement of Magnesium Sulfur Batteries with Modified Non-Nucleophilic Electrolytes
Adv. Energy Mater., 5 (3)
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Performance Improvement of Magnesium Sulfur Batteries with Modified Non-Nucleophilic Electrolytes
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