首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Synthesis and intramolecular charge-transfer properties of new tetrathiafulvalene-sigma-tetracyanoanthraquinodimethane diad (TTF-sigma-TCNAQ) and triad (TTF-sigma-TCNAQ-sigma-TTF) molecules
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Synthesis and intramolecular charge-transfer properties of new tetrathiafulvalene-sigma-tetracyanoanthraquinodimethane diad (TTF-sigma-TCNAQ) and triad (TTF-sigma-TCNAQ-sigma-TTF) molecules

机译:新型四硫富瓦烯-sigma-四氰基蒽醌二甲烷二单元化合物(TTF-sigma-TCNAQ)和三单元化合物(TTF-sigma-TCNAQ-sigma-TTF)的合成及分子内电荷转移性质

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We report the use of functionalised electron acceptor tetracyanoanthraquinodimethane (TCNAQ) units in the synthesis of novel diad D-sigma-A compounds 6 and 7 [D = tetrathiafulvalenyl (TTF) and ferrocenyl] and the triad TTF-sigma-TCNAQ-sigma-TTF assembly 8. Compounds 6-8 display a very weak, broad, low-energy intramolecular charge-transfer band in the UV-VIS spectra. Nanosecond laser flash photolysis of compound 6 did not lead to any new transient absorptions in the 300-800 nm region, suggesting that if a charge-separated species is formed upon excitation, then back electron transfer occurs very rapidly to regenerate the ground state. Cyclic voltammetry of compounds 6-8 shows that reversible oxidation processes occur for the TTF and ferrocene moieties, and a reversible two-electron reduction occurs for the TCNAQ moiety. Spectroelectrochemical studies on compound 6 have enabled the redox processes to be assigned to the sequential formation of the TTF radical cation and dication upon oxidation, and the TCNAQ dianion upon reduction. Simultaneous electrochemistry and EPR (SEEPR) experiments provide further evidence for intramolecular interaction between the TTF and TCNAQ moieties in compound 6. Quantum mechanical calculations on compound 6, performed by the AM1 method, predict that in its minimum energy conformation the TTF and TCNAQ moieties are approximately orthogonal to one another, with the TCNAQ unit folded into a butterfly conformation. [References: 54]
机译:我们报告功能化的电子受体四氰基蒽醌二甲烷(TCNAQ)单元在新型二元组D-sigma-A化合物6和7 [D =四硫富瓦烯基(TTF)和二茂铁基]和三元组TTF-sigma-TCNAQ-sigma-TTF的合成中的使用组装8.化合物6-8在UV-VIS光谱中显示出非常弱,宽广,低能量的分子内电荷转移带。化合物6的纳秒激光闪光光解作用不会在300-800 nm范围内引起任何新的瞬态吸收,这表明,如果在激发时形成电荷分离的物质,则反向电子转移会非常迅速地发生,以再生基态。化合物6-8的循环伏安法表明,TTF和二茂铁部分发生可逆的氧化过程,TCNAQ部分发生可逆的两电子还原。对化合物6的光谱电化学研究已使氧化还原过程能够被分配给氧化后的TTF自由基阳离子和阳离子和还原时的TCNAQ二价阴离子。同时进行的电化学和EPR(SEEPR)实验为化合物6中TTF和TCNAQ部分之间的分子内相互作用提供了进一步的证据。通过AM1方法对化合物6进行的量子力学计算预测,在其最小能量构象中,TTF和TCNAQ部分为TCNAQ单元折叠成蝶形,彼此大致正交。 [参考:54]

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