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A Record Chromophore Density in High‐Entropy Liquids of Two Low‐Melting Perylenes: A New Strategy for Liquid Chromophores

机译:两种低熔点Per的高熵液体中创记录的发色团密度:液态发色团的新策略

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摘要

Liquid chromophores constitute a rare but intriguing class of molecules that are in high demand for the design of luminescent inks, liquid semiconductors, and solar energy storage materials. The most common way to achieve liquid chromophores involves the introduction of long alkyl chains, which, however, significantly reduces the chromophore density. Here, strategy is presented that allows for the preparation of liquid chromophores with a minimal increase in molecular weight, using the important class of perylenes as an example. Two synergistic effects are harnessed: (1) the judicious positioning of short alkyl substituents, and (2) equimolar mixing, which in unison results in a liquid material. A series of 1‐alkyl perylene derivatives is synthesized and it is found that short ethyl or butyl chains reduce the melting temperature from 278 °C to as little as 70 °C. Then, two low‐melting derivatives are mixed, which results in materials that do not crystallize due to the increased configurational entropy of the system. As a result, liquid chromophores with the lowest reported molecular weight increase compared to the neat chromophore are obtained. The mixing strategy is readily applicable to other π‐conjugated systems and, hence, promises to yield a wide range of low molecular weight liquid chromophores.
机译:液体发色团是一类稀有但有趣的分子,对发光油墨,液体半导体和太阳能存储材料的设计有很高的要求。实现液相生色团的最常见方法是引入长烷基链,但是,这会大大降低生色团的密度。在此,以重要的of类为例,提出了制备分子量最小增加的液相发色团的策略。利用了两种协同作用:(1)短烷基取代基的明智定位,和(2)等摩尔混合,一致产生液态物质。合成了一系列1-烷基alkyl衍生物,发现乙基或丁基短链将熔融温度从278°C降低至低至70°C。然后,将两种低熔点衍生物混合在一起,由于系统的组态熵增加,导致材料无法结晶。结果,获得了与纯发色团相比具有最低报道的分子量增加的液相发色团。混合策略很容易适用于其他π共轭体系,因此有望产生各种低分子量的发色团。

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