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Functional Carbon Materials Derived through Hypergolic Reactions at Ambient Conditions

机译:在环境条件下通过超高音反应衍生的功能碳材料

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摘要

Carbon formation from organic precursors is an energy-consuming process that often requires the heating of a precursor in an oven at elevated temperature. In this paper, we present a conceptually different synthesis pathway for functional carbon materials based on hypergolic mixtures, i.e., mixtures that spontaneously ignite at ambient conditions once its ingredients contact each other. The reactions involved in such mixtures are highly exothermic, giving-off sizeable amounts of energy; hence, no any external heat source is required for carbonization, thus making the whole process more energy-liberating than energy-consuming. The hypergolic mixtures described here contain a combustible organic solid, such as nitrile rubber or a hydrazide derivative, and fuming nitric acid (100% HNO ) as a strong oxidizer. In the case of the nitrile rubber, carbon nanosheets are obtained, whereas in the case of the hydrazide derivative, photoluminescent carbon dots are formed. We also demonstrate that the energy released from these hypergolic reactions can serve as a heat source for the thermal conversion of certain triazine-based precursors into graphitic carbon nitride. Finally, certain aspects of the derived functional carbons in waste removal are also discussed.
机译:由有机前体形成碳是一种耗能的过程,通常需要在烤箱中在高温下加热前体。在本文中,我们提出了一种基于概念上不同的功能化碳材料的合成途径,该材料基于超高合剂混合物,即一旦其成分相互接触,在环境条件下会自燃的混合物。这种混合物中涉及的反应是高度放热的,释放出相当数量的能量。因此,碳化不需要任何外部热源,从而使整个过程比耗能更多地释放能量。本文所述的高羟基混合物包含易燃的有机固体,例如丁腈橡胶或酰肼衍生物,以及发烟硝酸(100%HNO)作为强氧化剂。在丁腈橡胶的情况下,获得碳纳米片,而在酰肼衍生物的情况下,形成光致发光的碳点。我们还证明了从这些高gogolic反应释放的能量可以用作将某些基于三嗪的前体热转化为石墨氮化碳的热源。最后,还讨论了废物清除过程中衍生的功能碳的某些方面。

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