三乙胺
空位缺陷
材料科学
范德瓦尔斯力
硫黄
硫化物
化学计量学
热液循环
石墨烯
选择性
格子(音乐)
分子
化学物理
化学工程
纳米技术
结晶学
催化作用
物理化学
化学
有机化学
工程类
冶金
物理
声学
作者
Yan Fan,Wei Wang,Heng Guan,Caixia Liu,Xin Li,Yu Chen,Jingran Zhou,Yan Ma,Dali Liu,Shengping Ruan
标识
DOI:10.1016/j.snb.2022.132826
摘要
Two-dimensional (2D) layered metal sulfides with abundant edge sites and weak van der Waals bonds are promising materials that absorb sensing molecules at low temperatures. The introduction of defects is an effective strategy to improve the sensing performance of two-dimensional sulfide semiconductors. In this experiment, we used a facile hydrothermal method to adjust the S content of the lattice in ZnIn2S4 microflowers(MFs). And the ZnIn2S4 MFs with suitable S-vacancy content were derived from the precursor with a stoichiometric ratio (Zn/In/S) of 1:2:6. These S-defect-engineered controlled growth of ZnIn2S4 MFs is composed of many nanosheets(NSs) with exposed {0001} facets grown along the c-axis direction, which has a large number of S-vacancies that can serve as active sites for sensing reactions. Thus, S-vacancy-rich ZnIn2S4 MFs exhibited better sensing performance for triethylamine even at the optimum operating temperature(90 ℃), including high response(1013–100 ppm), low limit of detection(1 ppm), excellent gas selectivity, and fast response(4 s). It also shows good sensitivity to lower concentrations of triethylamine at room temperature. This work demonstrates the good effect and potential of vacancy modulation in improving the performance of two-dimensional sulfide nanomaterials for low-power sensing.
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