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Steering Catalytic Activity and Selectivity of CO2 Photoreduction to Syngas with Hydroxy-Rich Cu2S@ROH-NiCo2O3 Double-Shelled Nanoboxes
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2022-06-13 , DOI: 10.1002/anie.202205839
Lei Li 1 , Xinyan Dai 2 , De-Li Chen 1 , Yinxiang Zeng 3 , Yong Hu 1, 2 , Xiong Wen David Lou 3
Angewandte Chemie International Edition ( IF 16.1 ) Pub Date : 2022-06-13 , DOI: 10.1002/anie.202205839
Lei Li 1 , Xinyan Dai 2 , De-Li Chen 1 , Yinxiang Zeng 3 , Yong Hu 1, 2 , Xiong Wen David Lou 3
Affiliation
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Hierarchical Cu2S@ROH-NiCo2O3 double-shelled nanoboxes are synthesized through a multistep strategy to regulate the activity and selectivity of CO2 photoreduction into syngas. The hierarchical hollow structure and p–n heterojunction enable enhanced light absorption and fast charge separation. Moreover, the catalytic activity can be tuned by controlling the content of hydroxy groups on the surfaces of ROH-NiCo2O3.
中文翻译:
用富羟基 Cu2S@ROH-NiCo2O3 双壳纳米盒指导 CO2 光还原制合成气的催化活性和选择性
通过多步策略合成分级Cu 2 S@ R OH -NiCo 2 O 3双壳纳米盒,以调节CO 2光还原为合成气的活性和选择性。分层中空结构和 p-n 异质结能够增强光吸收和快速电荷分离。此外,可以通过控制R OH -NiCo 2 O 3表面的羟基含量来调节催化活性。
更新日期:2022-06-13
中文翻译:

用富羟基 Cu2S@ROH-NiCo2O3 双壳纳米盒指导 CO2 光还原制合成气的催化活性和选择性
通过多步策略合成分级Cu 2 S@ R OH -NiCo 2 O 3双壳纳米盒,以调节CO 2光还原为合成气的活性和选择性。分层中空结构和 p-n 异质结能够增强光吸收和快速电荷分离。此外,可以通过控制R OH -NiCo 2 O 3表面的羟基含量来调节催化活性。