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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 study of radical cation salts and TCNQ charge transfer complexes of a series of tetrathiafulvalenes (TTF) substituted by one or two hydroxylated side chain(s): -SCH2CH2OH
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Synthesis and study of radical cation salts and TCNQ charge transfer complexes of a series of tetrathiafulvalenes (TTF) substituted by one or two hydroxylated side chain(s): -SCH2CH2OH

机译:一系列被一个或两个羟基化侧链取代的四硫富瓦烯(TTF)的自由基阳离子盐和TCNQ电荷转移配合物的合成和研究:-SCH2CH2OH

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摘要

Unsymmetrically substituted tetrathiafulvalene derivatives containing hydroxy group(s) on side-chain(s) have been synthesized from cyano precursors via either a cross-coupling reaction or a Wittig-type condensation. As deduced from cyclic voltammetry data, the electron donor properties of the obtained compounds have been found to be similar to those of BEDTTTF. A series of radical cation salts derived from these donors has been obtained by electrocrystallization and charge transfer complexes have been prepared chemically by using TCNQ as an electron acceptor. The electrical conductivity of these phases ranges from 3 x 10(-2) to 7 x 10(-7) S cm(-1) which is consistent with their structural features. X-Ray structural analysis of three of the radical cation salts with monovalent closed-shell anions (Br-, ClO4-) indicates a 1:1 stoichiometry which implies that, in each case, the donor has been oxidized to the D+ state. In the same way, a crystal structure made of stacks where the donor and the acceptor molecules alternate has been found for a charge transfer complex between TCNQ and a donor derived from EDTTTF. The crystal structure of one of the donors indicates that the flexibility of the hydroxylated side chains appears as a favourable feature for the formation of hydrogen bonds. [References: 16]
机译:已经通过氰基前体通过交叉偶联反应或Wittig型缩合反应合成了在侧链上含有羟基的不对称取代的四硫富瓦烯衍生物。从循环伏安法数据推导,发现所获得的化合物的电子给体性质类似于BEDTTTF。通过电结晶获得了一系列衍生自这些供体的自由基阳离子盐,并且通过使用TCNQ作为电子受体化学制备了电荷转移配合物。这些相的电导率范围从3 x 10(-2)到7 x 10(-7)S cm(-1),与它们的结构特征一致。三种具有单价闭壳阴离子(Br-,ClO4-)的自由基阳离子盐的X射线结构分析表明,化学计量比为1:1,这意味着在每种情况下,供体已被氧化为D +状态。以相同的方式,已经发现由堆叠体构成的晶体结构,其中供体和受体分子交替出现,用于TCNQ和衍生自EDTTTF的供体之间的电荷转移络合物。供体之一的晶体结构表明羟基化侧链的柔韧性似乎是形成氢键的有利特征。 [参考:16]

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