光催化
硫化物
可见光谱
纳米技术
材料科学
金属
石墨氮化碳
三元运算
催化作用
石墨烯
硫化锌
纳米颗粒
金属有机骨架
化学
锌
有机化学
冶金
吸附
光电子学
计算机科学
程序设计语言
作者
Huimin Hao,Xianjun Lang
出处
期刊:Chemcatchem
[Wiley]
日期:2019-01-03
卷期号:11 (5): 1378-1393
被引量:133
标识
DOI:10.1002/cctc.201801773
摘要
Abstract Transition‐metal sulfides belong to an important subgroup of semiconductor photocatalysts that could promote a variety of valuable redox reactions under mild conditions. One notable merit of metal sulfides is their relatively smaller bandgaps than metal oxides, which in turn make sure that many of them can directly utilize visible light. Historically, the deployment of metal sulfides for visible‐light‐induced organic transformations took place shortly after the genesis of the research field of heterogeneous photocatalysis. In this review, we primarily focus on recent state‐of‐the‐art advancements of metal sulfide photocatalysis aimed at visible‐light‐induced selective organic transformations. Interests in this specific branch of photocatalysis have been rekindled due to the new methods for materials synthesis; the pursuit of new mechanisms; or the integration of metal sulfides with metal oxides, metal nanoparticles or other emerging materials. Thus we categorize them into four sections according to the different strategies in developing novel or more efficient organic processes. Binary and ternary metal sulfides, usually associated with new materials synthesis and mechanistic insights, can be used directly for visible‐light‐induced organic transformations. This is the basis of other further developments and will be introduced firstly. Next, the cooperation between metal sulfides and metal oxides or metal nanoparticles can be conducive to many photocatalytic systems. These developments will be discussed in the next two ensuing sections. Furthermore, the integration of metal sulfides with recent developed emerging materials such as metal‐organic frameworks (MOFs), graphene and graphitic carbon nitride (g‐C 3 N 4 ) will be discussed in another section to highlight the importance of merging metal sulfides with these materials. We attempt to keep an impartial panorama of these four distinctive sections even though the phases of development are quite different among sections, leaving plenty of room for the future expansion of this burgeoning area.
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