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电荷辅助卤键:离子性可变的给体-受体配合物。

Charge-assisted halogen bonding: donor-acceptor complexes with variable ionicity.

机构信息

Institut des Sciences Chimiques de Rennes, Université Rennes 1 & CNRS UMR 6226, Campus de Beaulieu, 35042 Rennes (France), Fax: (+33) 23-23-67-32.

出版信息

Chemistry. 2013 Oct 25;19(44):14804-13. doi: 10.1002/chem.201302507. Epub 2013 Oct 8.

Abstract

Charge-assisted halogen bonding is unambiguously revealed from structural and electronic investigations of a series of isostructural charge-transfer complexes derived from iodinated tetrathiafulvalene and tetracyanoquinodimethane derivatives, (EDT-TTFI2)2(TCNQF(n)), n=0-2, which exhibit variable degrees of ionicity. The iodinated tetrathiafulvalene derivative, EDT-TTFI2, associates with tetracyanoquinodimethane (TCNQ) and its derivatives of increasing reduction potential (TCNQF, TCNQF2) through highly directional C-I⋅⋅⋅N≡C halogen-bond interactions. With the less oxidizing TCNQ acceptor, a neutral and insulating charge-transfer complex is isolated whereas with the more oxidizing TCNQF2 acceptor, an ionic, highly conducting charge-transfer salt is found, both of 2:1 stoichiometry and isostructural with the intermediate TCNQF complex, in which a neutral-ionic conversion takes place upon cooling. A correlation between the degree of charge transfer and the C-I⋅⋅⋅N≡C halogen-bond strength is established from the comparison of the structures of the three isostructural complexes at temperatures from 300 to 20 K, thus demonstrating the importance of electrostatics in the halogen-bonding interaction. The neutral-ionic conversion in (EDT-TTFI2)2(TCNQF) is further investigated through the temperature dependence of its magnetic susceptibility and the stretching modes of the C≡N groups.

摘要

通过对一系列结构相同的电荷转移配合物的结构和电子研究,明确揭示了电荷辅助卤键的存在,这些配合物是由碘取代的四硫富瓦烯和四氰基对醌二甲基烷衍生物(EDT-TTFI2)2(TCNQF(n)),n=0-2 衍生而来,它们具有不同程度的离子性。碘取代的四硫富瓦烯衍生物 EDT-TTFI2 通过高度定向的 C-I···N≡C 卤键相互作用与四氰基对醌(TCNQ)及其还原电势增加的衍生物(TCNQF、TCNQF2)结合。与氧化性较弱的 TCNQ 受体结合时,得到中性和绝缘的电荷转移配合物;而与氧化性更强的 TCNQF2 受体结合时,则得到离子性、高导电性的电荷转移盐,两者均具有 2:1 的化学计量比,并与中间 TCNQF 配合物结构相同,在冷却过程中发生中性-离子转化。通过比较三个结构相同的配合物在 300 至 20 K 温度下的结构,建立了电荷转移程度与 C-I···N≡C 卤键强度之间的相关性,从而证明了静电在卤键相互作用中的重要性。通过其磁化率随温度的变化和 C≡N 基团的伸缩模式,进一步研究了(EDT-TTFI2)2(TCNQF)中的中性-离子转化。

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