首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Impact of deboronation on the electronic characteristics of closo-o-carborane: intriguing photophysical changes in triazole-appended carboranyl luminophores
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Impact of deboronation on the electronic characteristics of closo-o-carborane: intriguing photophysical changes in triazole-appended carboranyl luminophores

机译:借调对Closo-O-碳硼烷电子特性的影响:三唑齐叠碳硼酰荧光小体的诱人光药变化

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摘要

5-Phenyl-1,2,4-triazole-appended closo- (CB1 and CB2) and nido-o-carboranyl (nido-CB1 and nido-CB2) compounds were prepared and fully characterized using multinuclear NMR spectroscopy and elemental analysis. The solid-state molecular structures of both closo-compounds were analyzed by X-ray crystallography. Although the closo-compounds exhibited dual emissive patterns in the rigid state (in THF at 77 K), which were assignable to a pi-pi* local excitation (LE)-based emission (lambda(em) = ca. 380 nm) on the triazole moieties and to an intramolecular charge transfer (ICT)-based emission (ca. 460 nm) in which the o-carborane units acted as the acceptor (A), at 298 K in THF, the LE-based emission dominated. In contrast, the nido-compounds exhibited an intensive emission originating from ICT transitions in which the o-carborane units reversibly acted as the donor (D). In particular, the positive solvatochromic effects of both nido-compounds and the results of theoretical calculations for the o-carboranyl compounds supported the electronic role of the o-carboranyl unit in each compound. Investigation of the radiative decay mechanism of the closo- and nido-compounds using their quantum efficiency (phi(em)) and decay lifetime (tau(obs)) suggested that the ICT-based radiative decay of nido-compounds occurred more efficiently than the LE-based decay of closo-compounds. These results implied that emission from the closo-compounds was drastically enhanced by the deboronation reaction upon exposure to an increasing concentration of fluoride anions, and finally became similar to the emission color (sky-blue) of the nido-compounds.
机译:制备了添加5-苯基-1,2,4-三唑的closo-(CB1和CB2)和nido-o-羰基(nido-CB1和nido-CB2)化合物,并使用多核NMR光谱和元素分析对其进行了充分表征。用X射线晶体学分析了两种closo化合物的固态分子结构。尽管closo化合物在刚性状态下(在77 K的THF下)表现出双重发射模式,这可归因于三唑部分上基于π-π*局部激发(LE)的发射(λ(em)=约380 nm),以及在298 K的THF下基于分子内电荷转移(ICT)的发射(约460 nm),其中o-碳硼烷单元充当受体(a),基于LE的排放占主导地位。相比之下,nido化合物表现出源自ICT转变的密集发射,其中邻碳硼烷单元可逆地充当供体(D)。特别是,两种nido化合物的正溶剂化变色效应以及o-羰基化合物的理论计算结果支持了每种化合物中o-羰基单元的电子作用。利用量子效率(phi(em))和衰变寿命(tau(obs))研究closo和nido化合物的辐射衰变机制表明,基于ICT的nido化合物的辐射衰变比基于LE的closo化合物的衰变更有效。这些结果表明,当暴露于浓度不断增加的氟阴离子时,克洛索化合物的发射因脱硼反应而显著增强,并最终变得与奈多化合物的发射颜色(天蓝色)相似。

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    Kangwon Natl Univ Inst Mol Sci &

    Fus Technol Dept Chem Chunchon 24341 Gangwon South Korea;

    Kangwon Natl Univ Inst Mol Sci &

    Fus Technol Dept Chem Chunchon 24341 Gangwon South Korea;

    Kangwon Natl Univ Inst Mol Sci &

    Fus Technol Dept Chem Chunchon 24341 Gangwon South Korea;

    Kangwon Natl Univ Inst Mol Sci &

    Fus Technol Dept Chem Chunchon 24341 Gangwon South Korea;

    Kangwon Natl Univ Inst Mol Sci &

    Fus Technol Dept Chem Chunchon 24341 Gangwon South Korea;

    Kangwon Natl Univ Inst Mol Sci &

    Fus Technol Dept Chem Chunchon 24341 Gangwon South Korea;

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  • 正文语种 eng
  • 中图分类 化学;无机化学;
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