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Developing Photosensitizer-Cobaloxime Hybrids for Solar-Driven H2 Production in Aqueous Aerobic Conditions
Published on: October 5, 2019
Mimicking Natural Photosynthesis: Bromide-Mediated Photocatalysis for Spatially Decoupled Olefin Epoxidation and
Wenchao Jiang1, Xuan Wu2, Haochuan Jing3
1Dongguan Key Laboratory of Interdisciplinary Science for Advanced Materials and Large-Scale Scientific Facilities, School of Physical Sciences, Great Bay University, Dongguan 523000, China.
Abstract:
Selective photocatalytic epoxidation of olefins provides a green approach to chemical transformation, but it remains challenging because of competing water oxidation and olefin overoxidation. Herein, inspired by natural photosynthesis, we demonstrate a Br-/BrO--mediated solar-fuel generator, which allows for simultaneous H2 evolution and olefin epoxidation at two separate reactor chambers. In this design, the ErBi2O4Cl (EBOC) semiconductor drives H2 evolution in the presence of Br- ions under visible light irradiation, while the generated BrO- species diffuse to a dark reactor chamber to selectively oxidize olefins. The rapid Br- oxidation kinetics on the (010)/(100) facets of EBOC effectively suppresses the water oxidation reaction. More importantly, the decoupled system design prevents direct contact of olefins with the EBOC semiconductor, mitigating the olefin overoxidation. As a result, continuous H2 production is achieved, accompanied by an olefin-to-epoxide selectivity as high as 97%, significantly higher than that obtained in a conventional single-compartment reactor system. This work demonstrates an effective mediator-assisted strategy to suppress both competing side reactions and undesired reaction pathways in photocatalysis, providing a promising route for the rational design of efficient artificial photosynthetic platforms.
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