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普朗尼克表面活性剂超分子聚集体中电子转移反应的调控

Tuning of electron transfer reactions in pluronic-surfactant supramolecular assemblies.

作者信息

Verma Poonam, Pal Haridas

机构信息

Radioanalytical Chemistry Division, Bhabha Atomic Research Centre, Trombay, Mumbai 400 085, India.

出版信息

Phys Chem Chem Phys. 2015 Jun 21;17(23):15400-11. doi: 10.1039/c5cp01480h.

Abstract

Photoinduced electron transfer (ET) reaction between an anionic acceptor, coumarin-343 (C343), and a neutral donor, N,N-dimethylaniline (DMAN), has been investigated in composite supramolecular assemblies (mixed micelles) comprised of a pluronic copolymer (P123: EO20-PO70-EO20 or F88: EO103-PO39-EO103 where EO: ethylene oxide and PO: propylene oxide) and a cationic surfactant (CTAC: cetyltrimethylammonium chloride), following fluorescence quenching studies. Systematic increase in the quenching rates for the studied donor-acceptor system with the increasing CTAC to pluronic molar ratio in the mixed micelles demonstrates a large modulation in the ET rates. The mixed micellar systems in the present cases are formed through the incorporation of the hydrocarbon chains of CTAC into the poly-PO core of the pluronic micelles whereby the cationic head groups of CTAC are placed at the periphery of the micellar core, protruded into the hydrated poly-EO corona region, leading to the formation of a positively charged layer deep inside these mixed micelles. Thus, the anionic C343 dye, initially dissolved at the micelle-water interface, experiences a gradually increasing electrostatic attraction and is therefore systematically dragged deeper inside the micellar corona, as the CTAC composition is increased in the mixed micellar systems. Consequently, the ET rate of the C343-DMAN pair undergoes a large enhancement in the studied mixed micellar systems with the increasing CTAC to pluronic molar ratio. The present strategy of modulating ET reactions using such composite supramolecular assemblies can find applications in areas where bimolecular ET is an integral reaction step.

摘要

在荧光猝灭研究之后,对由一种普朗尼克共聚物(P123:EO20 - PO70 - EO20或F88:EO103 - PO39 - EO103,其中EO为环氧乙烷,PO为环氧丙烷)和一种阳离子表面活性剂(CTAC:十六烷基三甲基氯化铵)组成的复合超分子聚集体(混合胶束)中,阴离子受体香豆素 - 343(C343)与中性供体N,N - 二甲基苯胺(DMAN)之间的光致电子转移(ET)反应进行了研究。随着混合胶束中CTAC与普朗尼克的摩尔比增加,所研究的供体 - 受体体系的猝灭速率系统性增加,这表明ET速率有很大的调制。在当前情况下,混合胶束体系是通过将CTAC的烃链掺入普朗尼克胶束的聚 - PO核中形成的,由此CTAC的阳离子头基位于胶束核的外围,突出到水合的聚 - EO冠层区域,导致在这些混合胶束内部深处形成带正电的层。因此,最初溶解在胶束 - 水界面的阴离子C343染料,随着混合胶束体系中CTAC组成的增加,经历逐渐增强的静电吸引力,因此被系统性地拖入胶束冠层更深的位置。结果,在研究的混合胶束体系中,随着CTAC与普朗尼克摩尔比的增加,C343 - DMAN对的ET速率大幅提高。使用这种复合超分子聚集体调节ET反应的当前策略可在双分子ET是一个不可或缺的反应步骤的领域中找到应用。

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