paper

Selective electrochemical generation of hydrogen peroxide from water oxidation

arXiv:1509.07444 · doi:10.1021/acs.jpclett.5b02178

Abstract

Water is a life-giving source, fundamental to human existence, yet, over a billion people lack access to clean drinking water. Present techniques for water treatment such as piped, treated water rely on time and resource intensive centralized solutions. In this work, we propose a decentralized device concept that can utilize sunlight to split water into hydrogen and hydrogen peroxide. The hydrogen peroxide can oxidize organics while the hydrogen bubbles out. In enabling this device, we require an electrocatalyst that can oxidize water while suppressing the thermodynamically favored oxygen evolution and form hydrogen peroxide. Using density functional theory calculations, we show that the free energy of adsorbed OH can be used as a descriptor to screen for selectivity trends between the 2e water oxidation to HO and the 4e oxidation to O. We show that materials that bind oxygen intermediates sufficiently weakly, such as SnO, can activate hydrogen peroxide evolution. We present a rational design principle for the selectivity in electrochemical water oxidation and identify new material candidates that could perform HO evolution selectively.

13 pages, 3 figures, 6 pages supporting information

Cited by in corpus (3)