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