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涉及1,3-茚二酮衍生电子接受基团的共轭供体-受体取代体系。

Conjugated donor-acceptor substituted systems involving the 1,3-indandione-derived electron accepting moieties.

作者信息

Sigalov Mark, Mazor Royi, Ellern Arkady, Larina Nina, Lokshin Vladimir, Khodorkovsky Vladimir

机构信息

Dept. of Chemistry, Ben-Gurion Univ. of the Negev Beer-Sheva 84105 Israel.

Chemistry Department, Iowa State University 1711 Ames IA 50011 USA.

出版信息

RSC Adv. 2022 Sep 28;12(43):27766-27774. doi: 10.1039/d2ra05335g.

Abstract

Conjugated donor-acceptor molecules are the focus of research owing to their unusual photo- and electro-physical properties. At the same time, several unusual features of these compounds are difficult to explain or predict. Here we present our results on the synthesis, X-ray structures and D-NMR spectra providing a deeper insight into the conjugation within the derivatives involving the 1,3-indandione-derived series of compounds with varying electron acceptor strength and conjugating bridge length. The X-ray structures show the presence of several intermolecular short contacts strongly affecting the molecular geometries. In solution, the coalescence temperatures corresponding to the rotation of the phenylamino moiety of all derivatives do not exceed 246 K indicating the unhindered rotation at room temperature. Using B3LYP/aug-cc-pVDZ, the calculated model chemistry barriers to rotation, dipole moments and first hyperpolarizabilities are within experimental error. We conclude that neglecting the electron donating properties of bridges themselves and internal rotation about the single bonds taking part in conjugation can result, for instance, in misinterpretation of their room temperature NMR spectra and overestimation of the computed molecular dipole moments by more than 5 D.

摘要

共轭供体-受体分子因其异常的光物理和电物理性质而成为研究热点。与此同时,这些化合物的几个异常特征难以解释或预测。在此,我们展示了关于合成、X射线结构和D-NMR光谱的结果,这些结果能更深入地了解涉及具有不同电子受体强度和共轭桥长度的1,3-茚二酮衍生系列化合物的衍生物中的共轭情况。X射线结构显示存在几个强烈影响分子几何形状的分子间短接触。在溶液中,所有衍生物的苯氨基部分旋转对应的聚结温度不超过246K,表明在室温下旋转不受阻碍。使用B3LYP/aug-cc-pVDZ,计算得到的旋转模型化学势垒、偶极矩和第一超极化率在实验误差范围内。我们得出结论,例如,忽略桥本身的给电子性质以及参与共轭的单键的内旋转可能导致对其室温NMR光谱的错误解读,并使计算得到的分子偶极矩高估超过5D。

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