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二维自组装 MoS/ZnInS 异质结构用于高效光催化析氢。

A 2D self-assembled MoS/ZnInS heterostructure for efficient photocatalytic hydrogen evolution.

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies, Nanotechnology Research Center, School of Materials Science & Engineering, School of Physics, Sun Yat-sen University, Guangzhou 510275, Guangdong, P. R. China.

出版信息

Nanoscale. 2017 Nov 30;9(46):18290-18298. doi: 10.1039/c7nr06755k.

Abstract

Semiconductor photocatalysis for hydrogen production is a promising route to address current energy demands. It is still a great challenge to spatially separate photogenerated electrons and holes in bulk photocatalysts because of the long carrier transport pathway from the bulk to the surface. 2D heterostructured photocatalysts with the type II band alignment can not only shorten the carrier transport pathway, but also create an electric field at the interface to suppress the carrier recombination. However, ultrathin and intimate-contact 2D heterostructured photocatalysts have rarely been achieved so far. Herein, we reported that ZnInS nanosheets were self-assembled on few-layer MoS nanosheets to fabricate ultrathin and intimate-contact 2D heterostructured photocatalysts. This 2D heterostructure was formed thanks to the strong electrostatic adsorption between MoS and ZnInS. Under visible light irradiation, the H evolution rate of 2D MoS/ZnInS heterostructured photocatalysts can reach 8898 μmol g h, which is almost 16 times higher than that of the pure ZnInS photocatalysts. The dramatically enhanced photocatalytic performance was ascribed to the better charge separation and the accelerated surface reaction due to the heterostructure and more active sites provided by MoS. These results provided a new insight for the design and development of 2D heterostructured photocatalysts.

摘要

半导体光催化制氢是解决当前能源需求的一种很有前途的途径。由于载流子从体相到表面的传输路径较长,在体相光催化剂中实现光生电子和空穴的空间分离仍然是一个巨大的挑战。具有 II 型能带排列的二维异质结构光催化剂不仅可以缩短载流子的输运途径,而且可以在界面处产生电场来抑制载流子复合。然而,到目前为止,还很少有实现超薄且紧密接触的二维异质结构光催化剂的报道。在此,我们报道了 ZnInS 纳米片自组装在少层 MoS 纳米片上,以制备超薄且紧密接触的二维异质结构光催化剂。这种二维异质结构是由于 MoS 和 ZnInS 之间的强静电吸附而形成的。在可见光照射下,二维 MoS/ZnInS 异质结构光催化剂的 H 2 演化速率可达 8898 μmol g h -1 ,几乎是纯 ZnInS 光催化剂的 16 倍。这种显著增强的光催化性能归因于异质结构导致的更好的电荷分离和加速的表面反应,以及 MoS 提供的更多活性位点。这些结果为二维异质结构光催化剂的设计和开发提供了新的思路。

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