Show all

2023

Beck, A; Frey, H; Huang, X; Clark, AH; Goodman, ED; Cargnello, M; Willinger, M; van Bokhoven, JA

128. Controlling the SMSI Overlayer Structure in Pt/TiO2 Catalysts Prevents Particle Disintegration Journal Article

Angew. Chem. Int. Ed., 62 , pp. e202301468, 2023.

Links | BibTeX | Tags: microscopy, platinum, SMSI, titania

128. Controlling the SMSI Overlayer Structure in Pt/TiO2 Catalysts Prevents Particle Disintegration

2022

Riscoe, AR; Oh, J; Cargnello, M

117. Sulfur-Treated TiO2 Shows Improved Alcohol Dehydration Activity and Selectivity Journal Article

Nanoscale, 14 , pp. 2848-2858, 2022.

Links | BibTeX | Tags: alcohol dehydration, selectivity, sulfur, titania

117. Sulfur-Treated TiO2 Shows Improved Alcohol Dehydration Activity and Selectivity

2020

Wrasman, CJ; Riscoe, AR; Lee, H; Cargnello, M

88. Dilute Pd/Au alloys replace Au/TiO2 interface for selective oxidation reactions Journal Article

ACS Catal., 10 , pp. 1716-1720, 2020.

BibTeX | Tags: dilute alloys, gold, interface, oxidation reaction, palladium, single atom alloys, titania

88. Dilute Pd/Au alloys replace Au/TiO2 interface for selective oxidation reactions

Krayzman, V; Cockayne, E; Johnston-Peck, AC; Vaughan, G; Zhang, F; Allen, AJ; Kunz, LY; Cargnello, M; Friedman, LH; Levin, I

86. Local Structural Distortions and Failure of the Surface-Stress “Core-Shell” Model in Brookite Titania Nanorods Journal Article

Chem. Mater., 32 , pp. 286-298, 2020.

BibTeX | Tags: nanorods, stress model, titania

86. Local Structural Distortions and Failure of the Surface-Stress “Core-Shell” Model in Brookite Titania Nanorods

2010

Gombac, V; Sordelli, L; Montini, T; Delgado-Jaen, JJ; Adamski, A; Adami, G; Cargnello, M; Bernal, S; Fornasiero, P

4. CuOx-TiO2 Photocatalysts for H2 Production from Ethanol and Glycerol Solutions Journal Article

J. Phys. Chem. A, 114 , pp. 3916-3925, 2010.

Links | BibTeX | Tags: copper, ethanol, glycerol, hydrogen, photocatalysis, titania