Publications of Janis Timoshenko
All genres
Journal Article (55)
41.
Journal Article
: Operando high-pressure investigation of size-controlled CuZn catalysts for the methanol synthesis reaction. Nature Communications 12, 1435 (2021)
42.
Journal Article
121 (2), pp. 882 - 961 (2021)
In Situ/Operando Electrocatalyst Characterization by X-ray Absorption Spectroscopy. Chemical Reviews 43.
Journal Article
: Pt-Sn-Co nanocubes as highly active catalysts for ethanol electro-oxidation. Journal of Catalysis 393, pp. 247 - 258 (2021)
44.
Journal Article
10 (24), pp. 14540 - 14551 (2020)
Enhanced Formic Acid Oxidation over SnO2-decorated Pd Nanocubes. ACS Catalysis 45.
Journal Article
: Operando NRIXS and XAFS Investigation of Segregation Phenomena in Fe‐Cu and Fe‐Ag Nanoparticle Catalysts during CO2 Electroreduction. Angewandte Chemie International Edition 59 (50), pp. 22667 - 22674 (2020)
46.
Journal Article
: Operando NRIXS and XAFS Investigation of Segregation Phenomena in Fe‐Cu and Fe‐Ag Nanoparticle Catalysts during CO2 Electroreduction. Angewandte Chemie 132 (50), pp. 22856 - 22863 (2020)
47.
Journal Article
: Key role of chemistry versus bias in electrocatalytic oxygen evolution. Nature 587 (7834), pp. 408 - 413 (2020)
48.
Journal Article
: Electrocatalytic CO2 Reduction on CuOx Nanocubes: Tracking the Evolution of Chemical State, Geometric Structure, and Catalytic Selectivity using Operando Spectroscopy. Angewandte Chemie International Edition 59 (41), pp. 17974 - 17983 (2020)
49.
Journal Article
: Electrocatalytic CO2 Reduction on CuOx Nanocubes: Tracking the Evolution of Chemical State, Geometric Structure, and Catalytic Selectivity using Operando Spectroscopy. Angewandte Chemie 132 (41), pp. 18130 - 18139 (2020)
50.
Journal Article
11 (14), pp. 3727 - 3736 (2020)
Linking the evolution of catalytic properties and structural changes in copper-zinc nanocatalysts using operando EXAFS and neural-networks. Chemical Science 51.
Journal Article
141 (50), pp. 19879 - 19887 (2019)
Operando Insight into the Correlation between the Structure and Composition of CuZn Nanoparticles and their Selectivity for the Electrochemical CO2 Reduction. Journal of the American Chemical Society 52.
Journal Article
58 (47), pp. 17047 - 17053 (2019)
Selective CO2 Electroreduction to Ethylene and Multicarbon Alcohols via Electrolyte-Driven Nanostructuring. Angewandte Chemie International Edition 53.
Journal Article
131 (47), pp. 17203 - 17209 (2019)
Selective CO2 Electroreduction to Ethylene and Multicarbon Alcohols via Electrolyte-Driven Nanostructuring. Angewandte Chemie 54.
Journal Article
9 (11), pp. 10192 - 10211 (2019)
“Inverting” X-ray Absorption Spectra of Catalysts by Machine Learning in Search for Activity Descriptors. ACS Catalysis 55.
Journal Article
123 (16), pp. 10666 - 10676 (2019)
Tuning the Structure of Pt Nanoparticles through Support Interactions: An In Situ Polarized X-ray Absorption Study Coupled with Atomistic Simulations. The Journal of Physical Chemistry C Book Chapter (1)
56.
Book Chapter
Operando Studies of Electrocatalysts for Energy Technology Reactions. In: Operando Methods in Catalysis and Materials Science, pp. 11 - 111 (Eds. Weckhuysen , B. M.; Nieuwelink, A.-E.). Willey-VCH (2026)
Talk (29)
57.
Talk
In Situ/Operando X-Ray Absorption Spectroscopy. HZB Photon School 2025, Online Event (2025)
58.
Talk
Advanced XAS Data Analysis Approaches for Tracking Transformations of Working Electrocatalysts. SILS Conference 2024, Rende, Italy (2024)
59.
Talk
In-Situ and Operando Characterization of Catalysts by XAS. NanoCAT Summer School: Scientific Excellence in Nano-Catalysis, Prague, Czech Republic (2024)
60.
Talk
Machine Learning for the Interpretation of XAS Data in Heterogeneous Materials. International Workshop on Recent Advances and Future Trends in EXAFS Spectroscopy, Riga, Latvia (2024)