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2023
Published
journal article
Pt Single Atoms as Co‐Catalysts on CdS‐Sensitized Single‐Crystalline TiO2 Nanoflakes for Enhanced Visible Light Photocatalytic H2 Generation
ChemCatChem
DOI for Pt Single Atoms as Co‐Catalysts on CdS‐Sensitized Single‐Crystalline TiO2 Nanoflakes for Enhanced Visible Light Photocatalytic H2 Generation ↗ORCID works list for Pt Single Atoms as Co‐Catalysts on CdS‐Sensitized Single‐Crystalline TiO2 Nanoflakes for Enhanced Visible Light Photocatalytic H2 Generation ↗Scopus record for Pt Single Atoms as Co‐Catalysts on CdS‐Sensitized Single‐Crystalline TiO2 Nanoflakes for Enhanced Visible Light Photocatalytic H2 Generation ↗Citation, BibTeX, and publication details for Pt Single Atoms as Co‐Catalysts on CdS‐Sensitized Single‐Crystalline TiO2 Nanoflakes for Enhanced Visible Light Photocatalytic H2 Generation
W. Raza, A.B. Tesler, A. Mazare, O. Tomanec, S. Kment, P. Schmuki, Pt Single Atoms as Co‐Catalysts on CdS‐Sensitized Single‐Crystalline TiO2 Nanoflakes for Enhanced Visible Light Photocatalytic H2 Generation, ChemCatChem, 2023.
2022
Published
journal article
A facile “dark”-deposition approach for Pt single‐atom trapping on facetted anatase TiO2 nanoflakes and use in photocatalytic H2 generation
Electrochimica Acta
DOI for A facile “dark”-deposition approach for Pt single‐atom trapping on facetted anatase TiO2 nanoflakes and use in photocatalytic H2 generation ↗ORCID works list for A facile “dark”-deposition approach for Pt single‐atom trapping on facetted anatase TiO2 nanoflakes and use in photocatalytic H2 generation ↗Scopus record for A facile “dark”-deposition approach for Pt single‐atom trapping on facetted anatase TiO2 nanoflakes and use in photocatalytic H2 generation ↗Citation, BibTeX, and publication details for A facile “dark”-deposition approach for Pt single‐atom trapping on facetted anatase TiO2 nanoflakes and use in photocatalytic H2 generation
G. Cha, A. Mazare, I. Hwang, N. Denisov, J. Will, T. Yokosawa, Z. Badura, G. Zoppellaro, A.B. Tesler, E. Spiecker, P. Schmuki, A facile “dark”-deposition approach for Pt single‐atom trapping on facetted anatase TiO2 nanoflakes and use in photocatalytic H2 generation, Electrochimica Acta, 2022.
2022
Published
research article
Inhibition of H2 and O2 recombination: the key to a most efficient single-atom co-catalyst for photocatalytic H2 evolution from plain water
Advanced Functional Materials
DOI for Inhibition of H2 and O2 recombination: the key to a most efficient single-atom co-catalyst for photocatalytic H2 evolution from plain water ↗ORCID works list for Inhibition of H2 and O2 recombination: the key to a most efficient single-atom co-catalyst for photocatalytic H2 evolution from plain water ↗Scopus record for Inhibition of H2 and O2 recombination: the key to a most efficient single-atom co-catalyst for photocatalytic H2 evolution from plain water ↗Citation, BibTeX, and publication details for Inhibition of H2 and O2 recombination: the key to a most efficient single-atom co-catalyst for photocatalytic H2 evolution from plain water
I. Hwang, A. Mazare, J. Will, T. Yokosawa, E. Spiecker, P. Schmuki, Inhibition of H2 and O2 recombination: the key to a most efficient single-atom co-catalyst for photocatalytic H2 evolution from plain water, Advanced Functional Materials, 2022, 32 (44), 2207489.
2022
Published
journal article
Single-Atom-Based Catalysts for Photocatalytic Water Splitting on TiO2 Nanostructures
Catalysts
DOI for Single-Atom-Based Catalysts for Photocatalytic Water Splitting on TiO2 Nanostructures ↗ORCID works list for Single-Atom-Based Catalysts for Photocatalytic Water Splitting on TiO2 Nanostructures ↗Scopus record for Single-Atom-Based Catalysts for Photocatalytic Water Splitting on TiO2 Nanostructures ↗Citation, BibTeX, and publication details for Single-Atom-Based Catalysts for Photocatalytic Water Splitting on TiO2 Nanostructures
S. Hejazi, M.S. Killian, A. Mazare, S. Mohajernia, Single-Atom-Based Catalysts for Photocatalytic Water Splitting on TiO2 Nanostructures, Catalysts, 2022.
2021
Published
journal article
Advanced Photocatalysts: Pinning Single Atom Co‐Catalysts on Titania Nanotubes
Advanced Functional Materials
DOI for Advanced Photocatalysts: Pinning Single Atom Co‐Catalysts on Titania Nanotubes ↗ORCID works list for Advanced Photocatalysts: Pinning Single Atom Co‐Catalysts on Titania Nanotubes ↗Scopus record for Advanced Photocatalysts: Pinning Single Atom Co‐Catalysts on Titania Nanotubes ↗Citation, BibTeX, and publication details for Advanced Photocatalysts: Pinning Single Atom Co‐Catalysts on Titania Nanotubes
X. Zhou, I. Hwang, O. Tomanec, D. Fehn, A. Mazare, R. Zboril, K. Meyer, P. Schmuki, Advanced Photocatalysts: Pinning Single Atom Co‐Catalysts on Titania Nanotubes, Advanced Functional Materials, 2021.
2021
Published
journal article
As a single atom Pd outperforms Pt as the most active co-catalyst for photocatalytic H2 evolution
iScience
DOI for As a single atom Pd outperforms Pt as the most active co-catalyst for photocatalytic H2 evolution ↗ORCID works list for As a single atom Pd outperforms Pt as the most active co-catalyst for photocatalytic H2 evolution ↗Scopus record for As a single atom Pd outperforms Pt as the most active co-catalyst for photocatalytic H2 evolution ↗Citation, BibTeX, and publication details for As a single atom Pd outperforms Pt as the most active co-catalyst for photocatalytic H2 evolution
G. Cha, I. Hwang, S. Hejazi, A.S. Dobrota, I.A. Pašti, B. Osuagwu, H. Kim, J. Will, T. Yokosawa, Z. Badura, Š. Kment, S. Mohajernia, A. Mazare, N.V. Skorodumova, E. Spiecker, P. Schmuki, As a single atom Pd outperforms Pt as the most active co-catalyst for photocatalytic H2 evolution, iScience, 2021.
Archive scope
Publication status and access
The archive contains 102 published entries and 3 preprints. DOI, repository, ORCID, and Scopus links appear alongside publications when available.