...
首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Charge De localization in an Organic Mixed Valent Bithiophene Is Greater Than in a Structurally Analogous Biselenophene
【24h】

Charge De localization in an Organic Mixed Valent Bithiophene Is Greater Than in a Structurally Analogous Biselenophene

机译:在有机混合价联苯噻吩中的电荷去定位作用大于在结构相似的双硒酚中的电荷去定位作用。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

A series of selenophenes with redox-active amine end-capping groups was synthesized and investigated. A combination of cyclic voltammetry, optical absorption, EPR spectroscopy, and quantum-chemical calculations based on KohnSham density functional theory was used to explore charge delocalization in the monocationic mixed-valence forms of these selenophenes, and the results were compared to those obtained from analogous studies of structurally identical thiophenes. The striking finding is that the comproportionation constant (K-c) for the experimentally investigated biselenophene is more than 2 orders of magnitude lower than for its bithiophene counterpart (in CH3CN with 0.1 M TBAPF(6)), and the electronic coupling between the two amine end-capping groups in the mixed-valent biselenophene monocation is only roughly half as strong as in the corresponding bithiophene monocation. These are surprisingly large differences given the structural similarity between the respective biselenophene and bithiophene molecules. However, the computationally determined comproportionation constants for biselenophene and bithiophene are almost identical, and the electronic coupling in the monocationic biselenophene is only slightly smaller than that in the monocationic bithiophene. We assume that the external electric field may be responsible for the differences in monocation stabilities between experiment and computation. Our findings indicate that charge delocalization across individual selenophenes tends to be less pronounced than across individual thiophenes, and this may have important implications for long-range charge transfer across selenophene oligomers or polymers.
机译:合成和研究了一系列具有氧化还原活性胺端基的硒代苯。将循环伏安法,光吸收法,EPR光谱法和基于KohnSham密度泛函理论的量子化学计算相结合,探索了这些硒烯的单阳离子混合价态中的电荷离域,并将其结果与类似结果进行了比较。结构相同的噻吩的研究。令人惊讶的发现是,经过实验研究的双硒苯酚的配分常数(Kc)比其联噻吩对应物(在含0.1 M TBAPF(6)的CH3CN中)低2个数量级以上,并且两个胺端之间的电子偶联混合的苯并芴二烯单阳离子中的-封端基团的强度仅为相应的联噻吩单阳离子中的约一半。鉴于各自的苯并菲林和联噻吩分子之间的结构相似性,这些差异出乎意料地大。但是,通过计算确定的比色联苯和联苯噻吩的配分常数几乎相同,并且单阳离子联苯硒酚中的电子耦合仅比单阳离子联苯噻吩中的电子耦合小。我们假设外部电场可能是造成实验和计算之间单阳离子稳定性不同的原因。我们的研究结果表明,各个硒烯之间的电荷离域趋向比单个噻吩之间的离域趋势不那么明显,这可能对硒基低聚物或聚合物之间的长距离电荷转移产生重要影响。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号