普鲁士蓝
光催化
异质结
方案(数学)
构造(python库)
材料科学
蓝光
化学
化学工程
光化学
无机化学
光电子学
数学
有机化学
计算机科学
电化学
工程类
物理化学
催化作用
数学分析
电极
程序设计语言
作者
Xinyu Miao,Jing He,Xuanpu Wang,Zhiliang Jin
标识
DOI:10.1016/j.seppur.2024.126581
摘要
The effective combination of organic and inorganic semiconductors and the construction of heterosomes to form new electron transfer channels can effectively enhance photocatalytic activity. The Co-Mn PBA with a unique cross-skeleton structure and the two-dimensional covalent organic material graphdiyne modified CdS, and successfully prepared double S-scheme heterojunction. The composites demonstrate reduced charge transfer resistance, improved electrochemically active area, and enhanced kinetics. CCM/G-2(858.54 μmol) has excellent photocatalytic hydrogen evolution performance, which is 5.7, 178.9 and 499.1 times that of CdS, CoMn PBA and GDY, respectively. The successful construction of a double S-scheme heterojunction provides a novel pathway for the migration of photogenerated carriers, facilitates the spatial separation of electrons and holes, modifies the barrier difference between semiconductors, enhances electron flow, and thereby achieves efficient hydrogen evolution. The composite catalyst exhibited exceptional photocatalytic performance and stability, offering valuable insights for the efficient conversion of solar energy into chemical energy.
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