2010
DOI: 10.1016/j.ica.2010.05.047
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Synthesis and characterization of a novel spring-like organotin complex containing guest benzene molecules

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Cited by 4 publications
(3 citation statements)
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“…Unfortunately, the solvent molecules are not captured in this channel (Fig. 4), which is unlike our previous reported of similar institutions on [(Ph 3 Sn) (C 7 H 5 ClNO 2 )] [20].…”
Section: Crystal Structure Of Complexcontrasting
confidence: 69%
“…Unfortunately, the solvent molecules are not captured in this channel (Fig. 4), which is unlike our previous reported of similar institutions on [(Ph 3 Sn) (C 7 H 5 ClNO 2 )] [20].…”
Section: Crystal Structure Of Complexcontrasting
confidence: 69%
“…It is well-known that, aside from carboxylate anions, phenolate, and pyridyl groups can intermingle with organotin fragments. In this respect, carboxylate ligands with additional donor atoms available for coordination to the tin atoms were recently found to generate interesting polymers or macrocyclic structures. Among these, there are organotin complexes derived from ligands with one, , two, , three, and four , carboxylate groups, giving rigid frameworks when aromatic ligands were employed.…”
Section: Introductionmentioning
confidence: 99%
“…The 3-PAA ligand exhibits a μ 2 À kO1 : kO2 coordination mode by carboxylate oxygen atoms and the nitrogen atom of pyridine ring is uncoordinated with the central metal ion, which is similar to pyridylecarboxylic ligands-based metal complexes. [23] As shown in Figure 1c, neighbouring Tb(III) ions were bridged by two carboxyl groups of two μ 2 -H0.5(3-PAA) 0.5À ligands to produce a infinite extended 1D chain with the Tb•••Tb1A seperation of 3.9059 (3) Å. Further, these adjacent chains were further connected through the hydrogen-bond (N1À H1•••N1 = 1.9348 (2) Å, Table S4) by protonated nitrogen atoms of H0.5(3-PAA) 0.5À ligands, generating a 2D supramolecular network (Figure 2).…”
Section: Synthesis Ofmentioning
confidence: 99%