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首页> 外文期刊>Chemistry: A European journal >Composites of graphene and other nanocarbons with organogelators assembled through supramolecular interactions
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Composites of graphene and other nanocarbons with organogelators assembled through supramolecular interactions

机译:石墨烯和其他纳米碳与有机胶凝剂的复合物通过超分子相互作用组装

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摘要

Carbon nanomaterials (CNMs), such as exfoliated graphene (EG), long-chain functionalized EG, single-walled carbon nanotubes (SWNTs), and fullerene (C _(60)), have been investigated for their interaction with two structurally different gelators based on all-trans tri-p-phenylenevinylene bis-aldoxime (1) and n-lauroyl-L-alanine (2) both in solution and in supramolecular organogels. Gelation occurs in toluene through hydrogen bonding and van der Waals interactions for 1 and 2 in addition to π-π stacking specifically in the case of 1. These nanocomposites provide a thorough understanding in terms of molecular-level interactions of dimensionally different CNMs with structurally different gelators. The presence of densely wrapped CNMs encapsulated fibrous network in the resulting composites is evident from various spectroscopic and microscopic studies, indicating the presence of supramolecular interactions. Concentration- and temperature-dependent UV/Vis and fluorescence spectra show that CNMs promote aggregation of the gelator molecules, leading to hypochromism and quenching of the fluorescence intensity. Thermotropic mesophases of 1 are altered by the inclusion of a small amount of CNMs. The gel-CNM composites show increased electrical conductivity compared with that of the native organogel. Rheological studies of the composites demonstrate the formation of rigid and viscoelastic solidlike assembly due to reinforced aggregation of the gelators on CNMs. Synergistic behavior is observed in case of the composite gel of 1, containing a mixture of EG and SWNT, when compared with other mixtures of CNMs in all combinations with EG. This affords new nanocomposites with interesting optical, thermal, electrical, and mechanical properties. Gelled together: Graphene and other nanocarbons were doped with two structurally different organogelators based on π-stacking and van der Waals interactions, which determined their self-assembly behavior (see figure) and brought about changes in the macroscopic behavior.
机译:研究了碳纳米材料(CNM),例如片状石墨烯(EG),长链功能化EG,单壁碳纳米管(SWNT)和富勒烯(C _(60))与两种结构不同的胶凝剂的相互作用以溶液和超分子有机凝胶中的全反式三对亚苯基亚乙烯基双醛肟(1)和正月桂酰-L-丙氨酸(2)为基础。除了π-π堆积外,甲苯还通过1和2的氢键和范德华相互作用在甲苯中发生凝胶化,尤其是在1情况下。这些纳米复合材料提供了对结构不同的尺寸不同的CNM的分子水平相互作用的透彻理解。胶凝剂。从各种光谱和显微镜研究中可以明显看出,在所得复合物中存在紧密包裹的CNMs包裹的纤维网络,表明存在超分子相互作用。浓度和温度相关的UV / Vis和荧光光谱表明,CNM促进胶凝剂分子的聚集,从而导致变色现象和荧光强度的猝灭。通过加入少量的CNM可以改变1的中间​​相。与天然有机凝胶相比,凝胶-CNM复合材料显示出更高的电导率。复合材料的流变学研究表明,由于CNM上胶凝剂的增强聚集,形成了刚性和粘弹性的固体状组件。与包含所有与EG组合的CNM的其他混合物相比,在包含EG和SWNT混合物的1的复合凝胶的情况下观察到协同行为。这提供了具有有趣的光学,热,电和机械性能的新型纳米复合材料。胶凝在一起:石墨烯和其他纳米碳被两种基于π堆积和范德华相互作用的结构不同的有机胶凝剂掺杂,这决定了它们的自组装行为(见图)并带来了宏观行为的变化。

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