2012

446.
Gao, Wang; Mueller, Jonathan E.; Jiang, Qing; Jacob, Timo
Die Rolle von koadsorbiertem CO und OH bei der Elektrooxidation von Ameisensäure auf Pt(111)
Angewandte Chemie, 124 (37) :9584—9589
August 2012
Publisher: Wiley
DOI:10.1002/ange.201203078
File:https://doi.org/10.1002%2Fange.201203078
445.
Jacob, Timo
Electrocatalysis
In M. Beller, A. Renken, R. A. van Santen, Editor, Catalysis: From Principles to Applications
Page 201—215
Publisher: Wiley-VCH, Weinheim, Germany
2012
201—215
444.
Soliman, K. A.; Kibler, L.A.; Kolb, D. M.
Electrocatalytic Behaviour of Epitaxial Ag(111) Overlayers Electrodeposited onto Noble Metals: Electrooxidation of d-Glucose
Electrocatalysis, 3 :170-175
2012
443.
Saitner, M.; Eberle, F.; Wagner, P.; Baccus, J.; D'Olieslaeger, M.; Kolb, D. M.; Boyen, H.-G.
Impact of functional (terminal) groups onto the electronic structure of metal electrodes in molecular junctions - a photoemission study
J. Phys. Chem., C116 :21810-21815
2012
442.
Jacob, T.
Multiscale Modeling in Electrochemistry
In R. C. Alkire, D. M. Kolb, J. Lipkowski, P. N. Ross, Editor
Publisher: Wiley-VCH, Weinheim, Germany
2012
File:pdf/fileadmin/website_uni_ulm/nawi.inst.080/publikationen/B8_Multiscale_Wiley_2013.pdf
441.
Kaghazchi, Payam; Jacob, Timo; Ermanoski, Ivan; Chen, Wenhua; Madey, Theodore E
New surfaces stabilized by adsorbate-induced faceting
Journal of Physics: Condensed Matter, 24 (26) :265003
June 2012
Publisher: IOP Publishing
DOI:10.1088/0953-8984/24/26/265003
File:https://doi.org/10.1088%2F0953-8984%2F24%2F26%2F265003
440.
Jacob, T.; Chen, W.; Ermanoski, I.; Madey, T.E.; Kaghazchi, P.
New surfaces stabilized by adsorbate–induced faceting
J. Phys.: Condens. Matter, 24(26) :265003
2012
DOI:10.1088/0953-8984/24/26/265003
File:pdf/fileadmin/website_uni_ulm/nawi.inst.080/publikationen/0083_New_Surfaces_Stabilized_JPhysCondensMatter_2012.pdf
439.
Jacob, T.; Schiffrin, D. J.; Völker, E.; Williams, F. J.; Calvo, E. J.
O2 induced Cu surface segregation in Au-Cu alloys studied by angle resolved XPS and DFT modelling
Phys. Chem. Chem. Phys., 14 (20) :7448 - 7455
2012
DOI:10.1039/C2CP40565B
File:pdf/fileadmin/website_uni_ulm/nawi.inst.080/publikationen/0080_O2_Induced_Cu_Surface_PhysChem_2012.pdf
438.
Völker, Edgar; Williams, Federico J.; Calvo, Ernesto J.; Jacob, Timo; Schiffrin, David J.
O2 induced Cu surface segregation in Au\textendashCu alloys studied by angle resolved XPS and DFT modelling
Physical Chemistry Chemical Physics, 14 (20) :7448
2012
Publisher: Royal Society of Chemistry (RSC)
DOI:10.1039/c2cp40565b
File:https://doi.org/10.1039%2Fc2cp40565b
437.
Chen, Wenhua; Bartynski, Robert A.; Kaghazchi, Payam; Jacob, Timo
Oxidation of CO by NO on planar and faceted Ir(210)
The Journal of Chemical Physics, 136 (22) :224701
June 2012
Publisher: AIP Publishing
DOI:10.1063/1.4723811
File:https://doi.org/10.1063%2F1.4723811
436.
Jacob, T.; Holze, R.; Schunke, P.; Neudecker, P.; Willbold, D.
Physikalische Chemie 2011
Nachrichten aus der Chemie, 60 (3) :313 - 322
2012
File:pdf/fileadmin/website_uni_ulm/nawi.inst.080/publikationen/0086_Physikalische_Chemie2011_Nachrichten_aus_der_Chemie_2012.pdf
435.
Kaghazchi, Payam; Jacob, Timo
Roughening of hcp metal surfaces induced by nitrogen adsorption
Physical Chemistry Chemical Physics, 14 (40) :13903
2012
Publisher: Royal Society of Chemistry (RSC)
DOI:10.1039/c2cp42014g
File:https://doi.org/10.1039%2Fc2cp42014g
434.
Wei, Wei; Jacob, Timo
Strong charge-transfer excitonic effects in C$łess$mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" display="inline"$\greater$$łess$mml:msub$\greater$$łess$mml:mrow /$\greater$$łess$mml:mn$\greater$4$łess$/mml:mn$\greater$$łess$/mml:msub$\greater$$łess$/mml:math$\greater$H-type hydrogenated graphene
Physical Review B, 86 (16)
October 2012
Publisher: American Physical Society (APS)
DOI:10.1103/physrevb.86.165444
File:https://doi.org/10.1103%2Fphysrevb.86.165444
433.
Jacob, T.; Wei, W.
Strong Charge-Transfer Excitonic Effects in C4H-type Hydrogenated Graphene
Phys. Rev. B, 86 (16) :165444
2012
DOI:10.1103/PhysRevB.86.165444
File:pdf/fileadmin/website_uni_ulm/nawi.inst.080/publikationen/0088_Strong_Charge_Transfer_PhysRevB_2012.pdf
432.
Kaghazchi, Payam; Jacob, Timo
Structure-activity relation of Re nanoparticles
Physical Review B, 86 (8) :085434
August 2012
Publisher: American Physical Society (APS)
DOI:10.1103/physrevb.86.085434
File:https://doi.org/10.1103%2Fphysrevb.86.085434
431.
Metzler, Martin; Fantauzzi, Donato; Anton, Josef; Jacob, Timo
Surface Modification of a $łess$i$\greater$n$łess$/i$\greater$-Si(111) Electrode through Aldehyde Grafting and Subsequent Metallization: Theory and Experiment
Zeitschrift für Physikalische Chemie, 226 (9-10) :1039—1048
September 2012
Publisher: Walter de Gruyter GmbH
DOI:10.1524/zpch.2012.0309
File:https://doi.org/10.1524%2Fzpch.2012.0309
430.
Jacob, T.; Anton, J.; Fantauzzi, D.; Metzler, M.
Surface modification of a n-Si(111) electrode through aldehyde grafting and subsequent metallization: theory and experiment
Z. Phys. Chem., 226 :1039–1048
2012
DOI:10.1524/zpch.2012.0309
File:pdf/fileadmin/website_uni_ulm/nawi.inst.080/publikationen/0085_Surface_Modification_nSi_ZPhysChem_2012.pdf
429.
Gao, Wang; Mueller, Jonathan E.; Jiang, Qing; Jacob, Timo
The Role of Co-Adsorbed CO and OH in the Electrooxidation of Formic Acid on Pt(111)
Angewandte Chemie International Edition, 51 (37) :9448—9452
August 2012
Publisher: Wiley
DOI:10.1002/anie.201203078
File:https://doi.org/10.1002%2Fanie.201203078
428.
Gao, Wang; Jacob\ast, Timo
Theoretical Studies of Formic Acid Oxidation
Catalysts for Alcohol-Fuelled Direct Oxidation Fuel Cells
Page 97—128
Publisher: The Royal Society of Chemistry
November 2012
97—128
DOI:10.1039/9781849734783-00097
File:https://doi.org/10.1039%2F9781849734783-00097
427.
Gao, W.; Jacob, T.
Theoretical Studies on the Electrochemical Oxidation of Formic Acid
In Z. X. Liang, T. S. Zhao, Editor
Publisher: Royal Society of Chemistry (RSC), Cambridge, United Kingdom
2012
ISBN:978-1-84973-405-9
File:pdf/fileadmin/website_uni_ulm/nawi.inst.080/publikationen/B7_FormicAcid_RSC_2012.pdf

2011

426.
Jacob, T.; Landstorfer, M.; Funken, S.
An advanced model framework for solid electrolyte intercalation batteries
Phys. Chem. Chem. Phys., 13 (28) :12817–12825
2011
DOI:10.1039/c0cp02473b
File:pdf/fileadmin/website_uni_ulm/nawi.inst.080/publikationen/0077_Advanced_Intercalation_Reaction_PhysChem_2011.pdf
425.
Mertens, Stijn F. L.; Gara, Matthew; Sologubenko, Alla S.; Mayer, Joachim; Szidat, Sönke; Krämer, Karl W.; Jacob, Timo; Schiffrin, David J.; Wandlowski, Thomas
Au@Hg Nanoalloy Formation Through Direct Amalgamation: Structural, Spectroscopic, and Computational Evidence for Slow Nanoscale Diffusion
Advanced Functional Materials, 21 (17) :3259—3267
July 2011
Publisher: Wiley
DOI:10.1002/adfm.201100409
File:https://doi.org/10.1002%2Fadfm.201100409
424.
Rinaldi, Ali; Tessonnier, Jean-Philippe; Schuster, Manfred E.; Blume, Raoul; Girgsdies, Frank; Zhang, Qiang; Jacob, Timo; Hamid, Sharifah Bee; Su, Dang Sheng; Schlögl, Robert
Dissolved Carbon Controls the Initial Stages of Nanocarbon Growth
Angewandte Chemie International Edition, 50 (14) :3313—3317
February 2011
Publisher: Wiley
DOI:10.1002/anie.201006639
423.
El-Deab, M.S.; Kibler, L.A.; Kolb, D. M.
Electrocatalytic oxidation of CO at Pt modified with manganese oxide nanorods
Electrocatalysis, 2 :220-223
2011
422.
Kolb, D. M.
Electrochemical surface science: Past, present and future
J. Sol. State. Elecrochem., 15 :1391-1395
2011