2016
DOI: 10.1002/chem.201504799
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General Assembly of Twisted Trigonal‐Prismatic Nonanuclear Silver(I) Clusters

Abstract: A general class of C3 -symmetric Ag9 clusters, [Ag9 S(tBuC6 H4 S)6 (dpph)3 (CF3 SO3 )] (1), [Ag9 (tBuC6 H4 S)6 (dpph)3 (CF3 SO3 )2 ]⋅CF3 SO3 (2), [Ag9 (tBuC6 H4 S)6 (dpph)3 (NO3 )2 ] ⋅NO3 (3), and [Ag9 (tBuC6 H4 S)7 (dpph)3 (Mo2 O7 )0.5 ]2 ⋅2 CF3 COO (4) (dpph=1,6-bis(diphenylphosphino)hexane), with a twisted trigonal-prism geometry was isolated by the reaction of polymeric {(HNEt3 )2 [Ag10 (tBuC6 H4 S)12 ]}n , 1,6-bis(diphenylphosphino)hexane, and various silver salts under solvothermal conditions. The struct… Show more

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Cited by 50 publications
(16 citation statements)
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“…Their fascinating argentophilic interactions not only contribute to the formation of aggregation of silver atoms but also have important influences on the luminescence properties. The Zang group reported a Ag 31 cluster based a 2D layer formed through the linkage of NO 3 – . Our group has long been pursuing the synthesis of novel silver clusters and related extended frameworks, and very recently, we isolated the first 3D 2-fold interpenetrated dia open framework based on a sulfate-templated Ag 22 cluster . Although there are some examples, how they are built from solution is still difficult to understand.…”
Section: Introductionmentioning
confidence: 99%
“…Their fascinating argentophilic interactions not only contribute to the formation of aggregation of silver atoms but also have important influences on the luminescence properties. The Zang group reported a Ag 31 cluster based a 2D layer formed through the linkage of NO 3 – . Our group has long been pursuing the synthesis of novel silver clusters and related extended frameworks, and very recently, we isolated the first 3D 2-fold interpenetrated dia open framework based on a sulfate-templated Ag 22 cluster . Although there are some examples, how they are built from solution is still difficult to understand.…”
Section: Introductionmentioning
confidence: 99%
“…The relationship can be fitted as the equation I / I 77 K = −0.0033 T + 1.1947 with an R 2 value of 0.985. Remarkably, the temperature identification range (77–300 K) of compound 1 is much wider than that of other previously reported luminescent MOFs, suggesting that the title Cu–Pb-based heterometallic MOF can be deemed to be a superior intensity-dependent luminescent ratiometric thermometer.…”
Section: Resultsmentioning
confidence: 82%
“…These nine metal ions are arranged in a quasi-linear form of Zn1-Zn2-Zn4-Zn3-Zn5-Zn3a-Zn4a-Zn2a-Zn1a ( a = 2 − x , 1 − y , − z ), forming a {Zn 9 (L) 8 ( μ 2 -OH) 4 (OCO) 2} secondary building unit ({Zn 9 } unit), as shown in Figure 11. Although some nonanuclear polymers have been reported [26,27,28,29], most of them are based on rare earth ions [27,30,31,32], while those based on the Zn(II) ion are relatively rare [33,34]. Furthermore, most of the reported structures of nonanuclear units are a square antiprismatic arrangement or hourglass structure [33,35].…”
Section: Resultsmentioning
confidence: 99%