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  • The Influence of Elastic St...
    Yan, Kai; Maark, Tuhina Adit; Khorshidi, Alireza; Sethuraman, Vijay A.; Peterson, Andrew A.; Guduru, Pradeep R.

    Angewandte Chemie (International ed.), May 17, 2016, Letnik: 55, Številka: 21
    Journal Article

    Understanding the role of elastic strain in modifying catalytic reaction rates is crucial for catalyst design, but experimentally, this effect is often coupled with a ligand effect. To isolate the strain effect, we have investigated the influence of externally applied elastic strain on the catalytic activity of metal films in the hydrogen evolution reaction (HER). We show that elastic strain tunes the catalytic activity in a controlled and predictable way. Both theory and experiment show strain controls reactivity in a controlled manner consistent with the qualitative predictions of the HER volcano plot and the d‐band theory: Ni and Pt's activities were accelerated by compression, while Cu's activity was accelerated by tension. By isolating the elastic strain effect from the ligand effect, this study provides a greater insight into the role of elastic strain in controlling electrocatalytic activity. Strain‐tuned catalysis: Elastic strain affects catalytic reaction rates, but is often coupled with a ligand effect. To isolate the strain effect, three thin metal films on elastic substrates were subjected to uniaxial loading and unloading, and investigated for their activity in the hydrogen evolution reaction.