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在超薄薄膜中通过机械控制分子聚集和荧光开关/增强。

Mechanical control of molecular aggregation and fluorescence switching/enhancement in an ultrathin film.

机构信息

School of Chemistry, University of Hyderabad, Hyderabad 500 046, India.

出版信息

Langmuir. 2012 Dec 18;28(50):17313-21. doi: 10.1021/la303549z. Epub 2012 Dec 6.

Abstract

Optical responses of molecular aggregates and assemblies are often different from that of the individual molecules. Self-assembly approaches provide little physical control on the extent of aggregation. Mechanical compression of amphiphilic molecules (with chromophore/fluorophore head groups) at the air-water interface, followed by transfer as Langmuir-Blodgett (LB) films, should prove to be an elegant route to molecular assemblies with systematically tunable aggregation and optical responses. This concept is demonstrated using monolayer LB films of a diaminodicyanoquinodimethane (DADQ)-based amphiphile fabricated at different surface pressures. Films deposited above a threshold pressure exhibit a strong blue-shift in the absorption and fluorescence relative to those deposited below; computational investigations suggest that this is due to the formation of 2-dimensional close-packed assemblies. Significantly, the blue emission of the films deposited above the threshold pressure increases with compaction, demonstrating aggregation-induced fluorescence enhancement in ultrathin films, a phenomenon well-established in crystals and nanocrystals of selected classes of molecules including the DADQs. The sharp contrast with aggregation-induced fluorescence quenching observed with most dye molecules is illustrated by a parallel investigation of LB films of a hemicyanine-based amphiphile. The present study illustrates the efficacy of simple mechanical compression and the LB technique in fabricating ultrathin films with tailored supramolecular assembly and optical responses.

摘要

分子聚集体和组装体的光学响应通常与单个分子不同。自组装方法对聚集程度的控制很小。在气-水界面处机械压缩具有发色团/荧光团头基的两亲分子(amphiphilic molecule),然后将其转移为 Langmuir-Blodgett(LB)膜,这应该是一种具有系统可调聚集和光学响应的分子组装体的优雅途径。使用在不同表面压下制备的基于二氨基二氰基醌二甲烷(DADQ)的两亲分子的单层 LB 膜证明了这一概念。在高于阈值压力下沉积的膜在吸收和荧光方面表现出强烈的蓝移,与低于阈值压力下沉积的膜相比;计算研究表明,这是由于形成了 2 维密堆积组装体。值得注意的是,高于阈值压力下沉积的膜的蓝色发射随压实度的增加而增加,证明了在超薄膜中存在聚集诱导的荧光增强,这是在晶体和纳米晶体中观察到的一些分子类别(包括 DADQs)的一种现象。通过对基于半花菁的两亲分子的 LB 膜的平行研究说明了与大多数染料分子观察到的聚集诱导荧光猝灭的明显对比。本研究说明了简单机械压缩和 LB 技术在制备具有定制超分子组装体和光学响应的超薄膜方面的有效性。

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