One‐Photon Excitation Followed by a Three‐Step Sequential Energy–Energy–Electron Transfer Leading to a Charge‐Separated State in a Supramolecular Tetrad Featuring Benzothiazole–Boron‐Dipyrromethene–Zinc Porphyrin–C
<sub>60</sub>
作者:Deepak Badgurjar、Sairaman Seetharaman、Francis D'Souza、Raghu Chitta
DOI:10.1002/chem.202004262
日期:2021.1.26
indicated the occurrence of photoinduced electron transfer (PET) from 1ZnP* to ImC60. Finally, femtosecond transient absorption spectral studies provided evidence for the sequential occurrence of PEnT and PET events, namely, 1BTZ*‐BODIPY‐ZnP:ImC60→BTZ‐1BODIPY*‐ZnP:ImC60→BTZ‐BODIPY‐1ZnP*:ImC60→BTZ‐BODIPY‐ZnP.+:ImC60.− in the supramolecular tetrad. The evaluated rate of energy transfer, kEnT, was found to be
已合成了由苯并噻唑(BTZ)和BF 2螯合的硼二吡咯亚甲基(BODIPY)部分共价连接至卟啉锌(ZnP)核心的全色三元组,其特征在于使用1H NMR光谱,ESI-MS,紫外可见光,稳态荧光,电化学和飞秒瞬态吸收技术。三元组BTZ-BODIPY-ZnP和二元组BTZ-BODIPY和BODIPY-ZnP的吸收带以及参考化合物BTZ-OMe,BODIPY-OMe和ZnP-OMe均显示对应于各个发色团的特征带。BTZ-BODIPY-ZnP的电化学测量显示出与参考化合物相似的氧化还原行为。在BTZ-BODIPY-ZnP三单元组中选择性激发BTZ(约290 nm)后,由于从1 BTZ *到BODIPY部分的光致能量转移(PEnT),BTZ部分的荧光被淬灭,然后淬灭BODIPY发射是由于从1开始的连续PEnTZnP的BODIPY *部分,导致出现ZnP发射,表明发生了两步单重态-单重态能量转移。此外,通过使三重轴与咪唑附加的全吡咯烷(ImC