Water Is Not Universally Promotional: Size‐Dependent Inversion of Water Effects in Methanol Steam Reforming

S Shipan Liang B Bing Lu H Hao Wang (Division of Quantitative Sciences, Department of Oncology Johns Hopkins University School of Medicine Baltimore Maryland USA) Z Zhenzhen Wang (School of Environmental and Chemical Engineering) S Shanjun Mao J Jinqi Xiong (Advanced Materials and Catalysis Group Zhejiang Key Laboratory of Low‐Carbon Synthesis of Value‐Added Chemicals State Key Laboratory of Clean Energy Utilization Institute of Catalysis Department of Chemistry Zhejiang University Hangzhou P. R. China) Y Yong Wang

Abstract

ABSTRACT Water is widely assumed to be universally promotional in methanol steam reforming. Here, we show that this assumption fails when metal nuclearity and support hydroxyl chemistry are considered. Using a well‐defined set of Pt single‐atom and nanoparticle catalysts supported on hydroxyl‐rich CeO 2 and hydroxyl‐poor Al 2 O 3 , we uncover a striking, size‐dependent inversion of water effects. On CeO 2 ‐supported Pt nanoparticles, water activation generates surface hydroxyls that withdraw electron density from Pt, weaken CO adsorption and alleviate CO poisoning, thereby enhancing activity. In contrast, the same hydroxyl species inhibit methanol conversion on single‐atom Pt by competing for adsorption sites and stabilizing kinetically trapped formate intermediates. These opposing effects vanish on Al 2 O 3 , where water activation is limited. This size‐dependent inversion extends to other single‐atom catalysts and reducible supports (e.g., Pd 1 /CeO 2 , Rh 1 /CeO 2 ), confirming its generality and establishing a predictive framework for understanding and controlling water effects in reforming catalysis.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 26, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (7)

S

Shipan Liang

B

Bing Lu

H

Hao Wang

Division of Quantitative Sciences, Department of Oncology Johns Hopkins University School of Medicine Baltimore Maryland USA

Z

Zhenzhen Wang

School of Environmental and Chemical Engineering

S

Shanjun Mao

J

Jinqi Xiong

Advanced Materials and Catalysis Group Zhejiang Key Laboratory of Low‐Carbon Synthesis of Value‐Added Chemicals State Key Laboratory of Clean Energy Utilization Institute of Catalysis Department of Chemistry Zhejiang University Hangzhou P. R. China

Y

Yong Wang