2018
DOI: 10.1039/c8dt02080a
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Evaluating the component contribution to nonlinear optical performances using stable [Ni4O4] cuboidal clusters as models

Abstract: Five stable clusters sharing the cuboidal [Ni4O4] skeleton are subjected to third-order nonlinear optical (NLO) property measurements. Preliminary results suggest that the NLO property is largely defined by the cluster core skeleton and the directly coordinated atoms, with limited contribution from the heavy atoms peripherally attached to the aromatic ligands.

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Cited by 12 publications
(8 citation statements)
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“…[1][2][3][4] Coordination complexes with NLO response properties have attracted increasing attention as potential molecular building block materials for optical communications and optical data processing. [5][6][7][8] There are several reports about metal (II) complexes highlighting the NLO properties, which also possess the advantages of organic and metallic properties. [9][10][11][12] On the other hand, the world is currently fighting a COVID-19 pandemic.…”
Section: Introductionmentioning
confidence: 99%
“…[1][2][3][4] Coordination complexes with NLO response properties have attracted increasing attention as potential molecular building block materials for optical communications and optical data processing. [5][6][7][8] There are several reports about metal (II) complexes highlighting the NLO properties, which also possess the advantages of organic and metallic properties. [9][10][11][12] On the other hand, the world is currently fighting a COVID-19 pandemic.…”
Section: Introductionmentioning
confidence: 99%
“…The Ag 4 cubane further features eight Ag–O bonds and two carboxylate (O–C–O) bridges to define its 12 edges. Notably, such Ag 4 cubane, with argentophilicity, might play a structural dictating role, in contrast to those cuboidal clusters such as Ni 4 formed by alternatively arranged Ni and O vertices …”
Section: Resultsmentioning
confidence: 99%
“…Other experimental conditions for these NLO measurements were the same as described in our previous articles. [ 18,20,51 ]…”
Section: Methodsmentioning
confidence: 99%
“…Transition metal clusters of organo‐thiometallates such as [Cp*MS 3 ] − (Cp* = pentamethylcyclopentadienyl; M = Mo, W), [ 1 ] [TpMoS(S 4 )] − , [Tp*MoS(S 4 )] − , [TpWS 3 ] − and [Tp*WS 3 ] − (Tp = hydridotris(pyrazol‐1‐yl)borate; Tp* = hydridotris(3,5‐dimethylpyrazol‐ 1‐yl)borate) [ 2 ] have been extensively investigated in the last two decades because of their diverse structural characteristics, [ 3‐9 ] their revelation to biological systems, [ 10‐13 ] catalysis, [ 14‐15 ] and optoelectronic materials. [ 3,16‐24 ] In this regard, we and others have developed a keen interest in the development of molecular arrays from preformed Mo(W)‐Cu(Ag)‐S clusters. [ 25‐29 ] Some of these molecular entities are capable of gas adsorption, [ 30 ] sensing, [ 31 ] or exhibit nonlinear optical properties.…”
Section: Background and Originality Contentmentioning
confidence: 99%