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High-efficiency visible-light photocatalytic H2O2 production using CdSe-based core/shell quantum dots

Catalysis Science & Technology [2022]
Wenkai Ji, Zaixiang Xu, Shijie Zhang, Yang Li, Zhikang Bao, Zijiang Zhao, Liang Xie, Xing Zhong, Zhongzhe Wei, Jianguo Wang
ABSTRACT

Photocatalytic production of hydrogen peroxide (H2O2) has received great attention as a promising route for sustainable solar fuel. In this work, we demonstrate that quantum dots (QDs) can be explored as a useful photocatalyst for high-efficiency photocatalytic production of H2O2 under visible-light with a record-high concentration of 126 mmol L−1. By band structure and wavefunction engineering, QDs exhibit an enhanced stability in an oxidized and humid environment. An oil/water two-phase system is designed to realize spontaneous separation of the H2O2 formed to the aqueous phase and of the organic by-products formed to the oil phase. By electron paramagnetic resonance (EPR) measurements, ˙O2− radicals are generated from QDs in the oil phase and transferred to the water phase immediately. The results in this work show that QDs with a rational surface and structure design can serve as an outstanding photocatalyst for the production of H2O2 under visible-light.

MATERIALS

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