2020
DOI: 10.1021/acs.chemrev.0c00094
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Surface Coordination Chemistry of Atomically Dispersed Metal Catalysts

Abstract: Atomically dispersed metal catalysts (ADCs), as an emerging class of heterogeneous catalysts, have been widely investigated during the past two decades. The atomic dispersion nature of the catalytic metal centers makes them an ideal system for bridging homogeneous and heterogeneous metal catalysts. The recent rapid development of new synthetic strategies has led to the explosive growth of ADCs with a wide spectrum of metal atoms dispersed on supports of different chemical compositions and natures. The availabi… Show more

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Cited by 417 publications
(280 citation statements)
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References 849 publications
(1,492 reference statements)
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“…Analyzing the coordination mode of metal atoms is a key step to establish a clear correlation between structure and activity. [ 93,94 ] The coordination effect not only affects the structural and electronic properties of the metal centers, but also adjusts the catalytic reaction pathways. [ 95–101 ] This section reviews the coordination effect from two aspects, named by the construction of surface defects and the modification of functional groups.…”
Section: The Correlations Between the Structure And Reactivity Of Dacmentioning
confidence: 99%
“…Analyzing the coordination mode of metal atoms is a key step to establish a clear correlation between structure and activity. [ 93,94 ] The coordination effect not only affects the structural and electronic properties of the metal centers, but also adjusts the catalytic reaction pathways. [ 95–101 ] This section reviews the coordination effect from two aspects, named by the construction of surface defects and the modification of functional groups.…”
Section: The Correlations Between the Structure And Reactivity Of Dacmentioning
confidence: 99%
“…could be of intense relevance to the geometry structures and potential performances of nanoclusters. [17][18][19][20][21][22][23][24] For example, for different liganded-Au 25 nanoclusters, spherical Au 25 (SR) 18 25,26 shows a larger total current density than rod-shaped [Au 25 (PPh 3 ) 10 (SR') 5 Cl 2 ] 2+ 27 for electrochemical CO 2 reduction 28 , however, higher conversion can be observed for rod-shaped Au 25 than spherical Au 25 in photocatalytic oxidation of benzyl amine reaction 29 . In addition, Jin et.…”
Section: Introductionmentioning
confidence: 99%
“…Compared to traditional catalysts, the single‐atom catalysts (SACs), especially iron‐nitrogen carbon (Fe‐NC) with atomic Fe‐N x moieties as principal active sites possess the merits of maximal atom utilization efficiency, extraordinary activity, and selectivity, as well as tunable electronic environments. [ 13,14 ] This class of electrocatalysts have been acclaimed as the frontier of advancing ORR. [ 15 ]…”
Section: Introductionmentioning
confidence: 99%