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Novel Cerium-Based Sulfide Nano-Photocatalyst for Highly Efficient CO 2 Reduction.

Hao ZhangJiamin MaSiyuan WangJixiang JiZhichao ZengZhu-Rui ShenYaping DuChun-Hua Yan
Published in: Small (Weinheim an der Bergstrasse, Germany) (2022)
To address the environmental crisis caused by excessive emissions of CO 2 , the development of effective photocatalysts for the conversion of CO 2 into chemicals has emerged as one of the most promising strategies. Herein, beyond those well-studied materials, a rare-earth sulfide-based nanocrystal NaCeS 2 is fabricated and investigated for efficient and selective conversion of CO 2 into CO, where the role of Ce ions is crucial. Firstly, the hybridization of Ce 4f and Ce 5d orbitals contributes to the photoresponsive band structure of NaCeS 2 . Secondly, due to the charge rearrangement supplied by the incompletely filled 4f orbitals of Ce ions, NaCeS 2 exhibits excellent charge separation efficiency and CO 2 adsorption affinity, reducing the energy barrier for the conversion from CO 2 to CO. Moreover, a NaCeS 2 -MoS 2 heterostructure is also designed to further boost the electron transfer from the Mo site to the Ce site, which results in an improvement of the catalytic reduction yield from 7.24 to 23.42 µmol g -1 within 9 h (both better than TiO 2 controls). This work offers a platform for the development of rare-earth-based photocatalysts for CO 2 conversion.
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