He Zhiyi, Wang Yu, Dong Xiaoli, Zheng Nan, Ma Hongchao, Zhang Xiufang
School of Light Industry and Chemical Engineering, Dalian Polytechnic University #1 Qinggongyuan Dalian 116034 P. R. China
RSC Adv. 2019 Jul 12;9(38):21646-21652. doi: 10.1039/c9ra03507a. eCollection 2019 Jul 11.
We have designed and manufactured InS nanotubes containing sulfur vacancies as effective and stable photocatalysts for nitrogen fixation and ammonia production. In the preparation process of InS, a self-templated strategy was used to obtain the nanotubes. The sulfur vacancies were then manufactured by calcination under a nitrogen atmosphere. The existence of sulfur vacancies enhances the light absorption and promotes the separation and migration of the photoinduced charge carriers. In addition, sulfur vacancies can serve as the active sites to achieve strong N adsorption and activation. Thus the obtained samples show enhanced photocatalytic performance with a high NH generation rate (52.49 μmol h g) and excellent stability under UV-vis light.
我们设计并制造了含有硫空位的InS纳米管,作为用于固氮和制氨的高效稳定光催化剂。在InS的制备过程中,采用自模板策略获得纳米管。然后在氮气气氛下通过煅烧制造硫空位。硫空位的存在增强了光吸收,并促进了光生载流子的分离和迁移。此外,硫空位可作为活性位点,实现对氮的强吸附和活化。因此,所获得的样品在紫外-可见光下表现出增强的光催化性能,具有高的NH生成速率(52.49 μmol h g)和优异的稳定性。