...
首页> 外文期刊>Physical chemistry chemical physics: PCCP >Assessment of electronic transitions involving intermolecular charge transfer in complexes formed by fullerenes and donor-acceptor nanohoops
【24h】

Assessment of electronic transitions involving intermolecular charge transfer in complexes formed by fullerenes and donor-acceptor nanohoops

机译:评估符合富勒烯和供体 - 受体纳米复合物分子间电荷转移的电子转换

获取原文
获取原文并翻译 | 示例

摘要

Complexes formed by fullerenes C-60/C-70 and substituted cycloparaphenylenes with the capability of acting as donor/acceptor pairs ([10]CPAq and [10]CPTcaq nanohoops) have been studied using density functional theory methods empirically corrected for dispersion. All nanohoops form stable complexes with fullerenes, with complexation energies amounting to around -32 kcal mol(-1) with C-60 and reaching between -36 and -39 kcal mol(-1) in the case of C-70. According to DFT calculations, the rings are too large to appropriately accommodate the fullerene, which moves from the centre of the ring to a side region (in most cases located on the side opposite the anthracene unit). In this way, the rings are deformed (the oval is stretched) in order to better accommodate the fullerene. Anyway, the orientation and position of the fullerenes inside the nanohoop have moderate influence on the stability. The preference for a given structure is the result of the combined effect of larger dispersion energies and smaller energy costs associated with the deformation of the ring. The analysis of the electronic transitions of the different complexes suggests that the presence of the anthracene unit promotes the appearance of intermolecular (nanohoop to fullerene) charge transfer transitions, even though no direct participation of the substituent has been observed.
机译:通过统一函数理论方法研究了富勒烯C-60 / C-70和具有作为供体/受体对([10] CPAQ和[10] CPTCAQ纳米)的能力的络合物,具有取代的环丙烷基,使用密度泛函数理论方法进行分散。所有纳米果蝇都与富勒烯形成稳定的配合物,络合能量在C-60的情况下,络合能量为约32kcal摩尔(-1),达到-36和-39千卡摩尔(-1)。根据DFT计算,环太大,不能适当地容纳从环的中心移动到侧面区域的富勒烯(在大多数情况下位于与蒽单元相对的侧面上)。以这种方式,环变形(椭圆形被拉伸),以便更好地容纳富勒烯。无论如何,纳米内部的富勒烯的定向和位置对稳定性具有适度的影响。对给定结构的偏好是较大的色散能量和与环的变形相关的更小的能量成本的结果。对不同配合物的电子转变的分析表明,即使未观察到取代基的直接参与,蒽单元的存在促进了分子间(纳米至富勒烯)电荷转移转变的外观。

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