首页> 外文期刊>Nanoscale >Multi-modular, tris(triphenylamine) zinc porphyrin-zinc phthalocyanine-fullerene conjugate as a broadband capturing, charge stabilizing, photosynthetic 'antenna-reaction center' mimic
【24h】

Multi-modular, tris(triphenylamine) zinc porphyrin-zinc phthalocyanine-fullerene conjugate as a broadband capturing, charge stabilizing, photosynthetic 'antenna-reaction center' mimic

机译:Multi-modular、三羟甲基氨基甲烷(三苯胺)液锌porphyrin-zinc phthalocyanine-fullerene共轭作为一个宽带捕获、电荷稳定光合作用模拟antenna-reaction中心

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

A broadband capturing, charge stabilizing, photosynthetic antenna-reaction center model compound has been newly synthesized and characterized. The model compound is comprised of a zinc porphyrin co-valently linked to three units of triphenylamine entities and a zinc phthalocyanine entity. The absorption and fluorescence spectra of zinc porphyrin complemented that of zinc phthalocyanine offering broadband coverage. Stepwise energy transfer from singlet excited triphenylamine to zinc porphyrin, and singlet excited zinc porphyrin to zinc phthalocyanine (k(ENT) similar to 10(11) s(-1)) was established from spectroscopic and time-resolved transient absorption techniques. Next, an electron acceptor, fullerene was introduced via metal-ligand axial coordination to both zinc porphyrin and zinc phthalocyanine centers, and they were characterized by spectroscopic and electrochemical techniques. An association constant of 4.9 x 10(4) M-1 for phenylimidazole functionalized fullerene binding to zinc porphyrin, and 5.1 x 10(4) M-1 for it binding to zinc phthalocyanine was obtained. An energy level diagram for the occurrence of different photochemical events within the multi-modular donor-acceptor conjugate was established from spectral and electrochemical data. Unlike the previous zinc porphyrin-zinc phthalocyanine-fullerene conjugates, the newly assembled donor-acceptor conjugate has been shown to undergo the much anticipated initial charge separation from singlet excited zinc porphyrin to the coordinated fullerene followed by a hole shift process to zinc phthalocyanine resulting in a long-lived charge separated state as revealed by femto-and nanosecond transient absorption spectroscopic techniques. The lifetime of the final charge separated state was about 100 ns.
机译:宽带捕获、电荷稳定光合antenna-reaction中心模型复合新合成和为特征。一个锌卟啉co-valently与三人单位的三苯胺实体和锌酞菁的实体。锌卟啉的荧光光谱补充锌酞菁的祭宽带覆盖。单线态兴奋的三苯胺锌卟啉,和单线态兴奋锌卟啉锌酞菁(k (ENT)类似于10 (11)(1))从光谱和成立吗时间分辨瞬态吸收技术。接下来,一个电子受体,富勒烯介绍了通过metal-ligand轴协调锌卟啉和酞菁锌中心,他们的特征光谱和电化学技术。缔合常数为4.9 x 10 (4) m - 1phenylimidazole功能化富勒烯绑定锌卟啉,5.1 x 10 (4) m - 1绑定到锌酞菁。发生的能级图在不同的光化事件multi-modular亲共轭是建立了从光谱和电化学数据。phthalocyanine-fullerene轭合物,新组装新的共轭已被证明接受备受关注的初始费用分离从单线态兴奋锌卟啉协调富勒烯,后跟一个洞锌酞菁的转变过程一个长寿的电荷分离状态显示由femto-and纳秒瞬态吸收光谱技术。最终约100 ns电荷分离的状态。

著录项

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