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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Improvement of Quantum Yields for Photoinduced Energy/Electron Transfer by Isolation of Self-Aggregative Zinc Tetraphenyl Prophyrin-Pendant Polymer Using Cyclodextrin Inclusion in Aqueous Solution
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Improvement of Quantum Yields for Photoinduced Energy/Electron Transfer by Isolation of Self-Aggregative Zinc Tetraphenyl Prophyrin-Pendant Polymer Using Cyclodextrin Inclusion in Aqueous Solution

机译:通过在水溶液中使用环糊精包合分离自聚集的四苯基锌卟啉自悬挂聚合物来提高光诱导能量/电子转移的量子产率

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Cyclodextrin inclusion for self-aggregative sensitizers was found to improve quantum yields for photoinduced energy/electron transfer by the isolation of sensitizers in an aqueous solution. In water, cyclodextrin derivatives can prevent self-aggregation of sensitizers, which decreases the total quantum yields for photoinduced energy/electron transfer by fast self-quenching of singlet excited states, and anionic water-soluble zinc tetraphenyl porphyrin-pendant polymers (poly-ZnP) show self-aggregation and self-quenching of the singlet excited state of the zinc tetraphenyl porphyrin moiety. With the addition of 2,3,6-tri-O-methyl-β-cyclodextrin (TMBCD) to an aqueous solution of poly-ZnP, cyclodextrin inclusion induces isolation of the zinc tetraphenyl prophyrin moiety, which extends extensively the lifetime of the singlet excited state. In the presence of TMBCD, the quantum yield for photoinduced triplet-triplet (T-T) energy transfer (Φ_(en)) from photoexcited poly-ZnP to O_2 was enhanced remarkably from 0.11 (without TMBCD) to 0.57 (with TMBCD) in air-saturated water. Also, the quantum yield for electron transfer (Φ_(et)) from photoexcited poly-ZnP to water-soluble γ-cyclodextrinbicapped [60]fullerene (C_(60)/γ-CD) increased from 0.095 (without TMBCD) to 0.20 with (TMBCD) in Arsaturated water. Through quantitative photolysis, it has been revealed that the quantum yield for the formation of triplet excited poly-ZnP (Φ_T) is increased greatly to produce large Φ_(en) and Φ_(et) values with the addition of TMBCD to the solution. Demonstrated is a new strategy of improve quantum yields for photoinduced reactions using cyclodextrin derivatives as an isolator/stabilizer of photoexcited self-aggregative dyes.
机译:通过在水溶液中分离敏化剂,发现用于自聚集敏化剂的环糊精包合物可提高光诱导能量/电子转移的量子产率。在水中,环糊精衍生物可防止敏化剂自聚集,从而通过单重激发态的快速自猝灭以及阴离子水溶性四苯基卟啉锌侧链聚合物(聚-ZnP)降低光敏能量/电子转移的总量子产率。 )显示了四苯基锌卟啉部分的单重态激发态的自聚集和自猝灭。通过在聚-ZnP水溶液中添加2,3,6-三-O-甲基-β-环糊精(TMBCD),环糊精的包合可诱导四苯基卟啉锌部分的分离,从而大大延长了单线态的寿命。兴奋的状态。在存在TMBCD的情况下,空气中从光激发的多-ZnP到O_2的光诱导三重态-三重态(TT)能量转移的量子产率(Φ_(en))从0.11(无TMBCD)显着提高到0.57(有TMBCD)。饱和水。同样,从光激发的聚ZnP到水溶性γ-环糊精双键[60]富勒烯(C_(60)/γ-CD)的电子转移的量子产率(Φ_(et))从0.095(无TMBCD)增加到0.20 (TMBCD)在饱和水中。通过定量光解法,发现在溶液中加入TMBCD可以大大提高形成三重激发态多聚ZnP(Φ_T)的量子产率,从而产生较大的Φ_(en)和Φ_(et)值。展示了一种使用环糊精衍生物作为光激发自聚集染料的隔离剂/稳定剂来提高光诱导反应的量子产率的新策略。

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