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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >New Cd~(2+), Pb~(2+) complexes with acylhydrazidate molecules from in situ acylation reactions
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New Cd~(2+), Pb~(2+) complexes with acylhydrazidate molecules from in situ acylation reactions

机译:原位酰化反应中的新的Cd〜(2 +),Pb〜(2+)与酰肼基分子的配合物

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摘要

Through employing the hydrothermal in situ acylation of N_2H _4 with aromatic dicarboxylic acids, four new acylhydrazidate- coordinated complexes, [Cd_2(pth)_4(phen)_2(H _2O)_2]·H_2O (pth = phthalhydrazidate; phen = 1,10-phenanthroline) 1, [Cd_3(dcpth)_6(phen) _2(H_2O)_2] (dcpth = 4,5- dichlorophthalhydrazidate) 2, [Cd(pdh)2(H2O)2] (pdh = pyridine-2,3-dicarboxylhydrazidate) 3 and [Pb(sdpth)(phen)] (sdpth = 4,4′-sulfoyldiphthalhydrazidate) 4, were obtained. X-ray analysis revealed that (i) isomerization and deprotonation of acylhydrazide molecules also occurred; (ii) compound 2 possesses a one-dimensional (1-D) double-chain structure, in which dcpth exhibits three types of coordination modes; (iii) compound 4 shows a 1-D castellated single-chain structure; (iv) the adjacent uncoordinated acylamino groups form a hydrogen-bonded dimer, via which compounds 2-4 self-assemble into different two-dimensional (2-D) supramolecular networks. In the solid state, only compound 3 emits green light (λ_(em) = 525 nm), while in an aqueous solution, compounds 1, 3 and 4 all emit light. Density functional theory (DFT) calculations indicate that the emission at 470 nm for compound 1 corresponds to a charge transfer within the phen molecule, whereas the emission at 400 nm for compound 3 corresponds to a charge transfer within the pdh molecule.
机译:通过使用芳族二羧酸对N_2H _4进行水热原位酰化反应,制得了四个新的酰肼基配合物[Cd_2(pth)_4(phen)_2(H _2O)_2]·H_2O(pth =邻苯二甲酰肼; phen = 1,10 -菲咯啉)1,1,[Cd_3(dcpth)_6(phen)_2(H_2O)_2](dcpth = 4,5-二氯邻苯二甲酰肼二酸酯)2,[Cd(pdh)2(H2O)2](pdh =吡啶-2,3获得了-(二羧基肼基苯二酸盐)3和[Pb(sdpth)(phen)](sdpth = 4,4'-磺酰基二邻苯二甲酰肼基)4。 X射线分析表明:(i)酰肼分子也发生异构化和去质子化; (ii)化合物2具有一维(1-D)双链结构,其中dcpth表现出三种类型的配位模式; (iii)化合物4显示1-D带齿的单链结构; (iv)相邻的未配位的酰基氨基形成氢键合的二聚体,化合物2-4通过该氢二聚体自组装成不同的二维(2-D)超分子网络。在固态下,只有化合物3发射绿光(λ_(em)= 525 nm),而在水溶液中,化合物1、3和4都发光。密度泛函理论(DFT)计算表明,化合物1在470 nm处的发射对应于phen分子内的电荷转移,而化合物3在400 nm处的发射对应于pdh分子内的电荷转移。

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