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Carbon Nanostructures Derived through Hypergolic Reaction of Conductive Polymers with Fuming Nitric Acid at Ambient Conditions

机译:碳纳米结构通过在环境条件下通过导电聚合物的高血压反应而衍生浓疹硝酸

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摘要

Hypergolic systems rely on organic fuel and a powerful oxidizer that spontaneously ignites upon contact without any external ignition source. Although their main utilization pertains to rocket fuels and propellants, it is only recently that hypergolics has been established from our group as a new general method for the synthesis of different morphologies of carbon nanostructures depending on the hypergolic pair (organic fuel-oxidizer). In search of new pairs, the hypergolic mixture described here contains polyaniline as the organic source of carbon and fuming nitric acid as strong oxidizer. Specifically, the two reagents react rapidly and spontaneously upon contact at ambient conditions to afford carbon nanosheets. Further liquid-phase exfoliation of the nanosheets in dimethylformamide results in dispersed single layers exhibiting strong Tyndall effect. The method can be extended to other conductive polymers, such as polythiophene and polypyrrole, leading to the formation of different type carbon nanostructures (e.g., photolumincent carbon dots). Apart from being a new synthesis pathway towards carbon nanomaterials and a new type of reaction for conductive polymers, the present hypergolic pairs also provide a novel set of rocket bipropellants based on conductive polymers.
机译:高压系统依赖于有机燃料和强大的氧化剂,在没有任何外部点火源的情况下接触时自发点燃。虽然它们的主要利用率涉及火箭燃料和推进剂,但最近才从我们的组中建立了高压化,这是一种新的一般方法,其根据高胆副(有机燃料氧化剂)的合成碳纳米结构的不同形态。在寻找新对中,这里描述的高胆碱混合物含有聚苯胺作为碳和熏蒸硝酸的有机源作为强氧化剂。具体地,两种试剂在在环境条件下接触以提供碳纳米片的迅速且自发地反应。在二甲基甲酰胺中的纳米片的进一步液相剥离导致分散的单层表现出强烈的抗锡杆菌效应。该方法可以延伸到其他导电聚合物,例如聚噻吩和聚吡咯,导致不同型碳纳米结构(例如光载碳点)。除了作为碳纳米材料的新的合成途径和用于导电聚合物的新型反应,本发明的高胆对还提供了一种基于导电聚合物的新型火箭双链体。

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