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首页> 外文期刊>Materials Chemistry Frontiers >Synthesis of tautomerization-inhibited diamino substituted tetraphenylethene derivatives with different mechanochromisms: the vital role of chlorine
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Synthesis of tautomerization-inhibited diamino substituted tetraphenylethene derivatives with different mechanochromisms: the vital role of chlorine

机译:合成tautomerization-inhibited二氨基代替tetraphenylethene衍生品与不同的mechanochromisms:的至关重要的作用氯

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The stereochemistry of tetraphenylethene (TPE) derivatives with aggregation induced emission (AIE) characteristics has demonstrated significant value in advanced materials and life sciences. Geometric Z/E-diamino substituted TPE (Z/E-2NH2-TPE) suffers from tautomerization and separation. To resolve this problem, pure geometric Z/E diamino and dichloro dual-substituted TPE (Z/E-2Cl-2NH2-TPE) molecules were designed precisely and separated via common column chromatography by introducing chlorine. Tautomerization would not occur even after being kept at increased temperature (200 1C) for 2 hours or at room temperature for 6 months. The role of chlorine atoms in geometric Z/E-2Cl-2NH2- TPE molecules has been deeply elucidated through theoretical computational chemistry methods and intermolecular interaction. Compared with Z/E-2NH2-TPE molecules, the Frank-Condon excitation, transition state of the tautomerization process, conical intersection, and photoluminescence in the potential energy surface of Z/E-2Cl-2NH2-TPE molecules were similar to those of Z/E-2NH2-TPE molecules. The energy barrier of tautomerization seldom clarified the role of the chlorine atoms while enhanced intermolecular interaction provided by chlorine atoms effectively rigidified the conformation of the tautomerization process. Thereafter, different mechanochromism (MC) photochemical properties were probed in depth, which were induced by structure-dependent molecules’ H/J-aggregation state and reorganization energy. The tautomerization-inhibited Z/E-2Cl-2NH2-TPE molecules with a reactive functional group provided a good template for designing advanced materials.
机译:的立体化学tetraphenylethene (TPE)衍生品与聚合诱导发射已经证明(AIE)特征先进的材料和生活中的重要价值科学。(Z / E-2NH2-TPE)患有互变异构化分离。几何Z / E二氨基和二氯甲烷dual-substituted TPE (Z / E-2Cl-2NH2-TPE)分子通过共同设计精确、分离吗柱层析法通过引入氯。互变异构化后不会发生温度保持在增加(200 1 c) 2小时或在室温下为6个月。氯原子在几何Z / E-2Cl-2NH2 -TPE深入阐明分子通过理论和计算化学方法分子间的相互作用。Frank-Condon Z / E-2NH2-TPE分子激发,过渡的状态互变异构化过程,锥形的十字路口,光致发光的势能Z / E-2Cl-2NH2-TPE表面分子类似于Z / E-2NH2-TPE分子。互变异构化很少的能量势垒阐明氯原子的作用提供增强的分子间相互作用氯原子有效僵化互变异构化过程的构象。此后,不同mechanochromism (MC)光化学性质探测深度,由structure-dependent诱导分子的H / J-aggregation状态和重组能量。tautomerization-inhibited Z / E-2Cl-2NH2-TPE反应性官能团的分子提供一个好的模板设计先进材料。

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