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Visible absorbing croconium dyes with intramolecular hydrogen bonding: A combined experimental and computational study

机译:具有分子内氢键的可见光吸收漂泊染料:一种综合实验和计算研究

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摘要

Croconium molecules CR1-CR4 with break-in conjugation (C-N Bonding) was synthesized by condensation of croconic acid and arylamines. By using combined experimental, and theoretital methods like UV visible spectra, DFT and TDDFT studies, we have characterized electronic absorption properties. The reported molecules are having absorption in visible region ranging from 450 to 550 nm with large extinction coefficient (2.5-5.0 x 10(4) M-1 cm(-1)). We find that CR2 and CR4 are showing 50 to 100 nm red shifted absorption than CR1 and CR3. This red shift is possibly due to presence of intramolecular hydrogen bonding in CR2 and CR4. Further this is supported by DFT studies, in case of CR2 and CR4 shows strong intramolecular hydrogen bonding between oxygen of carboxylate group (at ortho position of phenyl ring) and hydrogen of nitrogen attached to the central croconate ring. It is also observed that, there is small diradicaloid character in these molecules. This study is helpful in design and synthesis of new croconium dyes which are useful in materials applications. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过裂解和芳基胺的缩合合成具有突变缀合(C-N键合)的漂泊分子CR1-CR4。通过使用组合的实验和紫外线可见光谱,DFT和TDDFT研究等特征方法,我们具有表征电子吸收性能。报告的分子在可见区域中具有吸收,该区域范围为450-550nm,具有大的消光系数(2.5-5.0×10(4)m-1cm(-1))。我们发现CR2和CR4显示比CR1和CR3显示50至100nm的红色移位吸收。这种红移可能是由于CR2和Cr4中的分子内氢键合的存在。此外,这是通过DFT研究支持的,在CR2和CR4的情况下,CR4在羧酸盐基团(在苯环的邻位置处的邻位)和附着在中央鳄酯环上的氢气之间的强分子内氢键合。还观察到,这些分子中存在小的DirAdicaloid特征。本研究有助于设计和合成新的漂泊染料,可用于材料应用。 (c)2017年Elsevier B.V.保留所有权利。

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