Chemical Synthesis of Single Atomic Site Catalysts

Химический синтез катализаторов с одинарными атомными центрами
Dingsheng Wang, Yadong Li, Shufang Ji, Yuanjun Chen, Zedong Zhang, Xiaolu Wang
2020-04-03

metal single atomssingle atomic site catalystssingle-atom catalystsstabilization on supportssynthesis strategies
Manipulating metal atoms in a controllable way for the synthesis of materials with the desired structure and properties is the holy grail of chemical synthesis. The recent emergence of single atomic site catalysts (SASC) demonstrates that we are moving toward this goal. Owing to the maximum efficiency of atom-utilization and unique structures and properties, SASC have attracted extensive research attention and interest. The prerequisite for the scientific research and practical applications of SASC is to fabricate highly reactive and stable metal single atoms on appropriate supports. In this review, various synthetic strategies for the synthesis of SASC are summarized with concrete examples highlighting the key issues of the synthesis methods to stabilize single metal atoms on supports and to suppress their migration and agglomeration. Next, we discuss how synthesis conditions affect the structure and catalytic properties of SASC before ending this review by highlighting the prospects and challenges for the synthesis as well as further scientific researches and practical applications of SASC.
1
Fabrication of highly reactive and stable single metal atoms on suitable supports is a prerequisite for SASC research and practical applications.
2
Key prospects and challenges remain in the chemical synthesis, further research, and practical application of SASC, highlighted at the review's conclusion.
3
Single atomic site catalysts (SASC) enable maximum atom-utilization efficiency and possess unique structures and properties, driving extensive research interest.
4
Synthesis conditions significantly affect the structure and catalytic properties of SASC and are discussed in the review.
5
Various synthetic strategies exist to stabilize single metal atoms on supports and to suppress their migration and agglomeration; the review summarizes these with concrete examples.

Single atomic site catalysts (single metal atoms on supports)

Synthetic strategies and synthesis-condition effects for fabricating, stabilizing, and preventing migration/agglomeration of single metal atoms on supports to control structure and catalytic properties

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2020-04-03
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Authors
Dingsheng Wang
Yadong Li
Shufang Ji
Yuanjun Chen
Zedong Zhang
Xiaolu Wang
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