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A Guide to Design Functional Molecular Liquids with Tailorable Properties using Pyrene-Fluorescence as a Probe

机译:使用P荧光探针设计具有可定制性能的功能分子液体的指南

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摘要

Solvent-free, nonvolatile, room-temperature alkylated-π functional molecular liquids (FMLs) are rapidly emerging as a new generation of fluid matter. However, precision design to tune their physicochemical properties remains a serious challenge because the properties are governed by subtle π-π interactions among functional π-units, which are very hard to control and characterize. Herein, we address the issue by probing π-π interactions with highly sensitive pyrene-fluorescence. A series of alkylated pyrene FMLs were synthesized. The photophysical properties were artfully engineered with rational modulation of the number, length, and substituent motif of alkyl chains attached to the pyrene unit. The different emission from the excimer to uncommon intermediate to the monomer scaled the pyrene-pyrene interactions in a clear trend, from stronger to weaker to negligible. Synchronously, the physical nature of these FMLs was regulated from inhomogeneous to isotropic. The inhomogeneity, unexplored before, was thoroughly investigated by ultrafast time-resolved spectroscopy techniques. The result provides a clearer image of liquid matter. Our methodology demonstrates a potential to unambiguously determine local molecular organizations of amorphous materials, which cannot be achieved by conventional structural analysis. Therefore this study provides a guide to design alkylated-π FMLs with tailorable physicochemical properties.
机译:无溶剂,不挥发,室温的烷基化π功能分子液体(FML)迅速出现,是新一代的流体物质。但是,精确设计以调节其理化性质仍然是一个严峻的挑战,因为这些性质受功能性π单元之间微妙的ππ相互作用控制,而这些ππ相互作用很难控制和表征。在本文中,我们通过用高灵敏度的pyr荧光探测π-π相互作用来解决这个问题。合成了一系列烷基化的pyrFML。通过合理调节连接到unit单元的烷基链的数量,长度和取代基序,精心设计了光物理性质。从准分子到单体的不常见中间体的不同发射,emission- the相互作用呈明显趋势,从强到弱到可忽略不计。同步地,这些FML的物理性质从不均匀变为各向同性。通过超快时间分辨光谱技术彻底研究了以前从未探索过的不均匀性。结果提供了更清晰的液体图像。我们的方法论证明了明确确定非晶态材料局部分子组织的潜力,这是常规结构分析无法实现的。因此,本研究为设计具有可调节理化特性的烷基化πFML提供了指导。

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