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首页> 外文期刊>Journal of physical chemistry letters >Molecular Water Lilies: Orienting Single Molecules in a Polymer Film by Solvent Vapor Annealing
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Molecular Water Lilies: Orienting Single Molecules in a Polymer Film by Solvent Vapor Annealing

机译:分子水百合:通过溶剂蒸汽退火使聚合物膜中的单个分子取向。

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The microscopic orientation and position of photoactive molecules is crucial to the operation of optoelectronic devices such as OLEDs and solar cells. Here, we introduce a shape-persistent macrocyclic molecule as an excellent fluorescent probe to simply measure (i) its orientation by rotating the excitation polarization and recording the strength of modulation in photoluminescence (PL) and (ii) its position in a film by analyzing the overall PL brightness at the molecular level. The unique shape, the absorption and the fluorescence properties of this probe yield information on molecular orientation and position. We control orientation and positioning of the probe in a polymer film by solvent vapor annealing (SVA). During the SVA process the molecules accumulate at the polymer/air interface, where they adopt a flat orientation, much like water lilies on the surface of a pond. The results are potentially significant for OLED fabrication and single-molecule spectroscopy (SMS) in general.
机译:光敏分子的微观取向和位置对于光电器件(如OLED和太阳能电池)的运行至关重要。在这里,我们介绍一种形状持久的大环分子作为一种出色的荧光探针,它可以简单地通过旋转激发偏振并测量光致发光(PL)的调制强度来测量(i)其方向,以及通过分析来分析其在膜中的位置在分子水平上的总PL亮度。该探针的独特形状,吸收和荧光特性可提供有关分子取向和位置的信息。我们通过溶剂蒸汽退火(SVA)控制聚合物膜中探针的方向和定位。在SVA过程中,分子在聚合物/空气界面处积聚,并采用平坦的取向,就像睡莲在池塘表面上一样。一般而言,该结果对于OLED的制造和单分子光谱(SMS)可能具有重要意义。

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