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Coproduction of hydrogen and lactic acid from glucose photocatalysis on band-engineered Zn1-xCdxS homojunction.


ABSTRACT: Photocatalytic transformation of biomass into value-added chemicals coupled with co-production of hydrogen provides an explicit route to trap sunlight into the chemical bonds. Here, we demonstrate a rational design of Zn1-xCdxS solid solution homojunction photocatalyst with a pseudo-periodic cubic zinc blende (ZB) and hexagonal wurtzite (WZ) structure for efficient glucose conversion to simultaneously produce hydrogen and lactic acid. The optimized Zn0.6Cd0.4S catalyst consists of a twinning superlattice, has a tuned bandgap, and displays excellent efficiency with respect to hydrogen generation (690 ± 27.6 ?mol·h-1·gcat. -1), glucose conversion (~90%), and lactic acid selectivity (~87%) without any co-catalyst under visible light irradiation. The periodic WZ/ZB phase in twinning superlattice facilitates better charge separation, while superoxide radical (?O2 -) and photogenerated holes drive the glucose transformation and water oxidation reactions, respectively. This work demonstrates that rational photocatalyst design could realize an efficient and concomitant production of hydrogen and value-added chemicals from glucose photocatalysis.

SUBMITTER: Zhao H 

PROVIDER: S-EPMC7881236 | biostudies-literature | 2021 Feb

REPOSITORIES: biostudies-literature

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Coproduction of hydrogen and lactic acid from glucose photocatalysis on band-engineered Zn<sub>1-x</sub>Cd<sub>x</sub>S homojunction.

Zhao Heng H   Li Chao-Fan CF   Yong Xue X   Kumar Pawan P   Palma Bruna B   Hu Zhi-Yi ZY   Van Tendeloo Gustaaf G   Siahrostami Samira S   Larter Stephen S   Zheng Dewen D   Wang Shanyu S   Chen Zhangxin Z   Kibria Md Golam MG   Hu Jinguang J  

iScience 20210128 2


Photocatalytic transformation of biomass into value-added chemicals coupled with co-production of hydrogen provides an explicit route to trap sunlight into the chemical bonds. Here, we demonstrate a rational design of Zn<sub>1-x</sub>Cd<sub>x</sub>S solid solution homojunction photocatalyst with a pseudo-periodic cubic zinc blende (ZB) and hexagonal wurtzite (WZ) structure for efficient glucose conversion to simultaneously produce hydrogen and lactic acid. The optimized Zn<sub>0.6</sub>Cd<sub>0.  ...[more]

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