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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal and spectroscopic characterization of zinc(II) bis(dipyrrinate)s crystal solvates with acetone, dimethyl sulfoxide, and triethylamine
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Thermal and spectroscopic characterization of zinc(II) bis(dipyrrinate)s crystal solvates with acetone, dimethyl sulfoxide, and triethylamine

机译:丙酮,二甲亚砜和三乙胺形成的双(双吡啶)锌(II)双(二吡啶)锌晶体溶剂化物的热学和光谱表征

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The crystal solvates of 2,2'-, 2,3' -and 3,3'-bis(dipyrrinato)zinc(II) with acetone, dimethyl sulfoxide, and triethylamine were obtained by slow crystallization. Composition, stability, and spectral luminescent properties of the samples were studied. Spectroscopic studies showed that the quantum yield (u) of crystal solvates in cyclohexane is noticeably lower (to similar to 1.5-4.5 times) than u for of [Zn2L2] helicates. The thermal dissociation processes of crystal solvates in an argon atmosphere have been investigated. It is shown that bis(dipyrrinato)zinc(II) form stable supramolecular complexes with electron donor molecules X of the composition [Zn2L2Xn], where n = 1, 2, or 4. Crystal solvates are stable up to a temperature similar to 356.9-412.2 kappa. The energy stability of the solvates [Zn2L2Xn] reduced at replacing the 2,2'-bis(dipyrrine) on 2,3'-and 3,3'-isomer and with a decrease in electron donor number of molecular ligands X: Acet, DMSO, TEA. It is demonstrated that the high energies of the coordination interactions Zn-X in supramolecular complexes [Zn2L2Xn] are the main cause of the fluorescence quenching of [Zn2L2] luminophores in the presence of electron donor ligands X. The obtained results are of interest for the development on the basis of [Zn2L2] of the new fluorescent sensors of the electron donor molecules.
机译:通过缓慢结晶获得2,2'-,2,3'-和3,3'-双(二吡喃酮)锌(II)与丙酮,二甲基亚砜和三乙胺的晶体溶剂化物。研究了样品的组成,稳定性和光谱发光特性。光谱研究表明,环己烷中晶体溶剂化物的量子产率(u)显着低于[Zn2L2]螺旋体的u(约为1.5-4.5倍)。已经研究了在氩气氛中晶体溶剂化物的热解离过程。结果表明,双(二吡喃酮基)锌(II)与组成[Zn2L2Xn]的电子供体分子X形成稳定的超分子络合物,其中n = 1、2或4。晶体溶剂化物在高达356.9- 412.2卡伯。取代2,3'-和3,3'-异构体上的2,2'-双(双吡咯啉)溶剂化物[Zn2L2Xn]的能量稳定性降低,并且分子配体X的电子给体数减少: DMSO,TEA。结果表明,超分子配合物中[Zn2L2Xn]的配位相互作用Zn-X的高能是在电子给体X存在下[Zn2L2]发光体发生荧光猝灭的主要原因。电子供体分子的新型荧光传感器[Zn2L2]的基础上开发。

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