Directional Electron Transfer across In<sub>2</sub>S<sub>3</sub>/ZnS-Embedded Photocatalytic Membranes

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초록

Photocatalytic membranes prepared with semiconductor nanoparticles embedded in a polymer film offer a convenient approach to direct the electron and hole flow and separate reduction and oxidation products. We have now embedded In2S3 and ZnS semiconductor nanoparticles in a Nafion membrane to induce photocatalytic reactions using visible light. In addition, we incorporated a viologen redox relay within the membrane to facilitate electron transfer to thionine (TH) dissolved in water. By inserting the photocatalytic membrane in a H-cell, we can separate the oxidation and reduction products and track the electron flow using steady-state photolysis and transient absorption spectroscopy. The enhanced charge separation in the In2S3 and ZnS heterostructure at 50:50 loading allowed us to maximize the electron-transfer yield. Directing such vectorial charge transfer in a photocatalytic membrane will be useful in suppressing undesired side reactions (e.g., re-oxidation of a reduced product) and facilitating product separation.

키워드

photocatalytic membranes; electron transfer; viologen redox relay; product separation; heterostructure; INCORPORATED POLYMER SYSTEMS; INTEGRATED CHEMICAL-SYSTEMS; CARBON-DIOXIDE; CHARGE SEPARATION; SURFACE-ANALYSIS; CADMIUM-SULFIDE; NAFION; CDS; PHOTOELECTROCHEMISTRY; REDUCTION
제목
Directional Electron Transfer across In<sub>2</sub>S<sub>3</sub>/ZnS-Embedded Photocatalytic Membranes
저자
Yu, Yiseul; Kipkorir, Anthony; Choi, Myong Yong; Kamat, Prashant V.
DOI
10.1021/acsaem.3c02716
발행일
2024-01
유형
Article
저널명
ACS Applied Energy Materials
권
7
호
2
페이지
681 ~ 688