Computational high-throughput screening of electrocatalytic materials for hydrogen evolution
Top Cited Papers
- 15 October 2006
- journal article
- Published by Springer Nature in Nature Materials
- Vol. 5 (11), 909-913
- https://doi.org/10.1038/nmat1752
Abstract
The pace of materials discovery for heterogeneous catalysts and electrocatalysts could, in principle, be accelerated by the development of efficient computational screening methods. This would require an integrated approach, where the catalytic activity and stability of new materials are evaluated and where predictions are benchmarked by careful synthesis and experimental tests. In this contribution, we present a density functional theory-based, high-throughput screening scheme that successfully uses these strategies to identify a new electrocatalyst for the hydrogen evolution reaction (HER). The activity of over 700 binary surface alloys is evaluated theoretically; the stability of each alloy in electrochemical environments is also estimated. BiPt is found to have a predicted activity comparable to, or even better than, pure Pt, the archetypical HER catalyst. This alloy is synthesized and tested experimentally and shows improved HER performance compared with pure Pt, in agreement with the computational screening results.Keywords
This publication has 37 references indexed in Scilit:
- Toward computational screening in heterogeneous catalysis: Pareto-optimal methanation catalystsJournal of Catalysis, 2006
- Alloy catalysts designed from first principlesNature Materials, 2004
- Selectivity driven design of bimetallic ethylene epoxidation catalysts from first principlesJournal of Catalysis, 2004
- Kinetic interpretation of catalytic activity patterns based on theoretical chemical descriptorsJournal of Catalysis, 2003
- Quantum Mechanical–Rapid Prototyping Applied to Methane ActivationTopics in Catalysis, 2003
- Stainless steel optimization from quantum mechanical calculationsNature Materials, 2002
- ELECTRONIC STRUCTURE AND CATALYSIS ON METAL SURFACESAnnual Review of Physical Chemistry, 2002
- The inverse band-structure problem of finding an atomic configuration with given electronic propertiesNature, 1999
- Identification of cathode materials for lithium batteries guided by first-principles calculationsNature, 1998
- Design of a Surface Alloy Catalyst for Steam ReformingScience, 1998