甘油醛
甘油
催化作用
二羟丙酮
选择性
化学工程
材料科学
法拉第效率
化学计量学
析氧
化学
纳米技术
电极
有机化学
电化学
物理化学
工程类
脱氢酶
酶
作者
Jie Yu,Jesús González‐Cobos,F. Dappozze,Francisco J. López-Tenllado,Jesús Hidalgo-Carrillo,Alberto Marinas,P. Vernoux,Angel Caravaca,C. Guillard
标识
DOI:10.1016/j.apcatb.2022.121843
摘要
The photoelectrocatalytic (PEC) glycerol oxidation has emerged as a promising technology for the simultaneous valorization of this biomass waste and hydrogen production. Herein, we report the enhancement of the photocatalytic (PC) activity and stability of a monoclinic WO3 catalyst, by means of an external bias, for the selective generation of value-added C3 products under near-neutral conditions. Glyceraldehyde and dihydroxyacetone production were increased up to 4.5 and 11.5 times, respectively, while maintaining a liquid selectivity of these C3s above 87% and a stable faradaic efficiency above 50% of the additional holes generated, in a wide potential range (0.5–2.0 V vs. RHE). Indeed, the photo- and electro-catalytic contributing effects are unravelled for the first time herein. The photoelectrocatalytic mechanisms on WO3 and WO3/TiO2 are discussed, as well as the key role of the sub-stoichiometric WO3−x content and the oxygen vacancies, which confer advantageous properties for the selective PEC valorization of glycerol.
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