2023
675.
H. Yang,
P. V. Menezes,
G. Dai,
G. Vijaykumar,
Z. Chen,
M. Al-Shakran,
T. Jacob,
M. Driess and
P. W. Menezes,
"Activation of nickel foam through in-liquid plasma-induced phosphorus incorporation for efficient quasi-industrial water oxidation and selective oxygenation of organics",
Applied Catalysis B: Environmental,
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674.
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M. Uhl,
A. Kissmann,
F. Jansen,
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M. Ceblin,
F. Rosenau,
T. Jacob and
A. Kuehne,
"Fully-conjugated polyimidazole nanoparticles as active material in bi-odegradable electrodes for organic batteries",
Jan.
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American Chemical Society (ACS).
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673.
J. Bord,
B. Kirchhoff,
M. Baldofski,
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T. Jacob,
"An Atomistic View of Platinum Cluster Growth on Pristine and Defective Graphene Supports",
Small,
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Jan.
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Wiley.
DOI: | 10.1002/smll.202207484 |
Datei: | https://doi.org/10.1002%2Fsmll.202207484 |
672.
B. Kirchhoff,
E. Ö. Jónsson,
T. Jacob and
H. Jónsson,
"On the Challenge of Obtaining an Accurate Solvation Energy Estimate in Simulations of Electrocatalysis",
Topics in Catalysis,
Mai
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Springer Science and Business Media LLC.
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Datei: | https://doi.org/10.1007%2Fs11244-023-01829-0 |
671.
M. M. Elnagar,
L. A. Kibler and
T. Jacob,
"Metal deposition and electrocatalysis for elucidating structural changes of gold electrodes during cathodic corrosion",
Green Chemistry,
2023.
Royal Society of Chemistry (RSC).
DOI: | 10.1039/d3gc01614e |
Datei: | https://doi.org/10.1039%2Fd3gc01614e |
670.
B. Kirchhoff,
C. Jung,
D. Gaissmaier,
L. Braunwarth,
D. Fantauzzi and
T. Jacob,
"In silico characterization of nanoparticles",
Physical Chemistry Chemical Physics,
2023.
Royal Society of Chemistry (RSC).
DOI: | 10.1039/d3cp01073b |
Datei: | https://doi.org/10.1039%2Fd3cp01073b |
669.
C. Im,
B. Kirchhoff,
I. Krivtsov,
D. Mitoraj,
R. Beranek and
T. Jacob,
"Structure and Optical Properties of Polymeric Carbon Nitrides from Atomistic Simulations",
Chemistry of Materials,
vol. 35,
no. 4,
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Feb.
2023.
American Chemical Society (ACS).
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Datei: | https://doi.org/10.1021%2Facs.chemmater.2c02843 |
668.
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E. Artmann,
T. Jacob and
A. K. Engstfeld,
"Electric Potential Distribution Inside the Electrolyte during High Voltage Electrolysis",
The Journal of Physical Chemistry C,
vol. 127,
no. 9,
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American Chemical Society (ACS).
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Datei: | https://doi.org/10.1021%2Facs.jpcc.2c07873 |
667.
F. Fiesinger,
D. Gaissmaier,
M. Borg,
J. Beßner,
A. C. T. Duin and
T. Jacob,
"Development of a Mg/O ReaxFF Potential to describe the Passivation Processes in Magnesium-Ion Batteries\ast\ast",
ChemSusChem,
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Wiley.
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Datei: | https://doi.org/10.1002%2Fcssc.202201821 |
666.
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I. Bauer,
F. Brauchle and
T. Jacob,
"Designing a reference electrode \textendash An approach to fabricate laser perforated reference electrodes for lithium-ion batteries",
Electrochimica Acta,
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Elsevier BV.
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665.
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T. Geng,
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T. Jacob,
"Combining Deep Eutectic Solvents with TEMPO-based Polymer Electrodes: Influence of Molar Ratio on Electrode Performance",
Angewandte Chemie Internation Edition,
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Wiley.
DOI: | 10.1002/anie.202214927 |
664.
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"Cathodic corrosion to fabricate Au electrodes with unique properties for single-crystal electrochemistry, electrocatalysis, and SER spectroscopy"
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Elsevier,
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2022
663.
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L. A. Kibler and
Y. Sheasha,
"Electrolyte for Chromium Deposition from CR(III)-Compounds",
Apr.
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662.
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T. Jacob and
W. Gao,
"Progress of fundamental mechanism of formic acid decomposition and electrooxidation",
Journal of Energy Chemistry,
vol. 70,
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Feb.
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Elsevier B.V. and Science Press.
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Datei: |
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S. Zahn,
J. Lorenz,
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"Temperature-dependent Li vacancy diffusion in Li4Ti5O12 by means of first principles molecular dynamic simulations",
Phys. Chem. Chem. Phys.,
vol. 24,
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Royal Society of Chemistry.
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T. Jacob,
"Valence energy correction for electron reactive force field",
Journal of Computational Chemistry,
vol. 43(12),
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Mä.
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Datei: |
659.
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D. Kmiec,
L. Koepke,
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"Omicron: what makes the latest SARS-CoV-2 variant so concerning?",
Journal of Virology,
vol. 96,
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ASM Journals.
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658.
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"Influence of Chloride and Nitrate Anions on Copper Electrodeposition onto Au(111) from Deep Eutectic Solvents",
ChemElectroChem,
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Wiley.
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657.
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F. M. Schütt,
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"Initial Stages of Sodium Deposition onto Au(111) from [MPPip][TFSI]: An In‐Situ STM Study for Sodium‐Ion Battery Electrolytes",
ChemElectroChem,
vol. 20,
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"Kombination von Deep Eutectic Solvents mit TEMPO-basierten Polymerelektroden: Einfluss des Molaren Verhältnisses auf das Elektrodenverhalten\ast\ast",
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655.
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"Mixed Metal‐Organic Frameworks as Efficient Semi‐Solid Electrolytes for Magnesium‐Ion Batteries",
Batteries and Supercaps,
vol. 10,
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Wiley.
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"Nanoporous Au Formation on Au Substrates via High Voltage Electrolysis\ast\ast",
ChemPhysChem,
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653.
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"The influence of platinum surface oxidation on the performance of a PEM fuel cell – probing changes of catalytically active surface sites on a polycrystalline platinum electrode for the oxygen reduction reaction",
Electrochemical Science Advances,
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"Potential-Dependent Pt(111)/Water Interface: Tackling the Challenge of a Consistent Treatment of Electrochemical Interfaces\ast\ast",
ChemPhysChem,
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651.
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"Simulations of the Electrochemical Oxidation of Pt Nanoparticles of Various Shapes",
The Journal of Physical Chemistry,
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ACS Publications.
DOI: | 10.1021/acs.jpcc.2c00472 |