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首页> 外文期刊>Chemistry: A European journal >Photalumfnescenee and Conductivity of Self-Assembled pi-pi Stacks of Perylene Bisimide Dyes
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Photalumfnescenee and Conductivity of Self-Assembled pi-pi Stacks of Perylene Bisimide Dyes

机译:sim双酰亚胺染料的自组装π-π叠层的光致发光性和电导率

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摘要

The self-assembly of a new,highly fluorescent perylene bisimide dye 2 into pi stacks,both in solution and condensed phase,has been studied in detail by NMR spectroscopy,vapor pressure osmometry(VPO),UV/Vis and fluorescence spectroscopy,differential scanning calorimetry(DSC),optical polarizing microscopy(OPM)and X-ray diffraction.The NMR and VPO measurements revealed the formation of extended pi-pi stacks of the dye molecules in solution.The aggregate size determined from VPO and DOSY NMR measurements agree well with that obtained from the concentration and temperature-dependent UV/Vis spectral data by employing the isodes-mic model(equal K model).In the condensed state,dye 2 possesses a hexagonal columnar liquid crystalline(LC)phase as confirmed by X-ray diffraction analysis.The columnar stacking of this dye has been further explored by atomic force microscopy(AFM).Well-resolved columnar nanostructures of the compound are observed on graphite surface.A color-tunable luminescence from green to red has been observed upon aggregation which is accompanied by an increase of the fluorescence lifetime and depolarization.The observed absorption properties can be explained in terms of molecular exciton theory.The charge transport properties of dye 2 have been investigated by pulse radiolysis-time resolved microwave conductivity measurements and a 1D charge carrier mobility up to 0.42 cm~2 V~(-1)s~(-1)is obtained.Considering the promising self-assembly,semiconducting,and luminescence properties of this dye,it might serve as a useful functional material for nano-(opto)electronics.
机译:新型高荧光per二酰亚胺染料2在溶液和冷凝相中自组装为pi叠层的方法已通过NMR光谱,蒸气压渗透压(VPO),UV / Vis和荧光光谱,差示扫描进行了详细研究量热法(DSC),光学偏振显微镜(OPM)和X射线衍射.NMR和VPO测量揭示了溶液中染料分子的扩展pi-pi堆积的形成。通过VPO和DOSY NMR测量确定的聚集体大小非常吻合通过等离子-mic模型(等于K模型)从浓度和温度相关的UV / Vis光谱数据获得。在浓缩状态下,染料2具有六方柱状液晶(LC)相,通过X-确认射线衍射分析。通过原子力显微镜(AFM)进一步研究了该染料的柱状堆积,在石墨表面观察到了化合物的良好分辨的柱状纳米结构。聚集后观察到变红,伴随着荧光寿命的增加和去极化。观察到的吸收性质可以用分子激子理论来解释。染料2的电荷传输性质通过脉冲辐射分解时间进行了研究。解析得到的微波电导率测量值和高达0.42 cm〜2 V〜(-1)s〜(-1)的一维电荷载流子迁移率。考虑到该染料的有希望的自组装,半导体和发光性质,它可能会起作用作为纳米(光电)电子的有用功能材料。

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