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通过BP@Ni活化氮化碳以增强光催化析氢和选择性苄醇氧化

Activating Carbon Nitride by BP@Ni for the Enhanced Photocatalytic Hydrogen Evolution and Selective Benzyl Alcohol Oxidation.

作者信息

Wen Min, Yang Na, Wang Jiahong, Liu Danni, Zhang Wenchao, Bian Shi, Huang Hao, He Xingchen, Wang Xin, Ramakrishna Seeram, Chu Paul K, Yang Shihe, Yu Xue-Feng

机构信息

Shenzhen Engineering Center for the Fabrication of Two-Dimensional Atomic Crystals, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.

PKU-HKUST Shenzhen-Hong Kong Institute, Shenzhen 518057, China.

出版信息

ACS Appl Mater Interfaces. 2021 Nov 3;13(43):50988-50995. doi: 10.1021/acsami.1c15076. Epub 2021 Oct 23.

Abstract

Two-dimensional (2D) semiconductors are promising photocatalysts; in order to overcome the relatively low efficiency of single-component 2D photocatalysts, heterostructures are fabricated for effective charge separation. Herein, a 2D heterostructure is synthesized by anchoring nickel nanoparticle-decorated black phosphorus (BP) nanosheets to graphitic carbon nitride (CN) nanosheets (CN/BP@Ni). The CN/BP@Ni heterostructure exhibits an enhanced charge separation due to the tight interfacial interaction and the cascaded electron-transfer channel from CN to BP and then to Ni nanoparticles. Possessing abundant active sites of Ni and P-N coordinate bonds, CN/BP@Ni shows a high visible-light-driven H evolution rate of 8.59 mmol·h·g with the sacrificial agent EtOH, about 10-fold to that of CN/BP. When applying benzyl alcohol to consume photogenerated holes, CN/BP@Ni enables the selective production of benzaldehyde; therefore, two value-added products are obtained in a single closed redox cycle. This work provides new insights into the development of photocatalysts without non-noble metals.

摘要

二维(2D)半导体是很有前景的光催化剂;为了克服单组分二维光催化剂效率相对较低的问题,制备了异质结构以实现有效的电荷分离。在此,通过将镍纳米颗粒修饰的黑磷(BP)纳米片锚定到石墨相氮化碳(CN)纳米片上,合成了一种二维异质结构(CN/BP@Ni)。由于紧密的界面相互作用以及从CN到BP再到镍纳米颗粒的级联电子转移通道,CN/BP@Ni异质结构表现出增强的电荷分离。CN/BP@Ni具有丰富的镍活性位点和P-N配位键,在牺牲剂乙醇存在下,其可见光驱动的析氢速率高达8.59 mmol·h·g,约为CN/BP的10倍。当使用苯甲醇消耗光生空穴时,CN/BP@Ni能够选择性地生成苯甲醛;因此,在单个封闭的氧化还原循环中可获得两种增值产品。这项工作为不含非贵金属的光催化剂的开发提供了新的见解。

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