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Rapid, Universal Surface Engineering of Carbon Materials via Microwave-Induced Carbothermal Shock

机译:通过微波诱导的碳热休克快速,通用碳材料表面工程

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摘要

Carbon materials have been ubiquitously applied in energy conversion and storage devices owing to their high conductivity, excellent stability, and flexible structure. Conventional functionalization of carbon materials typically involves complex chemical treatment or long-term thermal and hydrothermal modifications. Here, a one-step universal strategy for the rapid surface engineering of carbon materials by microwave-induced carbothermal shock is reported. The temperature of carbon-fiber clothes (CC) quickly ramps to 1500 K within 5 s and maintains it for 2 s to complete the surface engineering process. At elevated temperatures, salt precursors decompose rapidly to form the catalytic nanoparticles, which simultaneously facilitate the oxidation of neighboring carbon sites, resulting in an activated CC with multiscale defects, oxygen-containing functional groups, and nanoparticles based on metal/metal oxide. In this process, both high temperatures from carbothermal shock and metal salt precursors are indispensable, as the former ensures effective carbon oxidation reaction while the latter provides the catalytic substance. The authors' method can be extended to many carbon materials, thereby offering a facile, efficient, and universal strategy for surface engineering toward a range of applications.
机译:由于其高导电性,优异的稳定性和柔性结构,碳材料在能量转换和储存装置中普遍地应用于能量转换和储存装置。碳材料的常规官能化通常涉及复杂的化学处理或长期热和水热改性。这里,报道了通过微波诱导的碳热冲击的碳材料快速表面工程的一步通用策略。碳纤维衣物(CC)的温度在5秒内快速斜坡至1500 k,并将其维持在2秒内完成表面工程过程。在升高的温度下,盐前体快速分解以形成催化纳米颗粒,其同时促进相邻的碳位点的氧化,从而产生具有多尺度缺陷,含氧官能团和基于金属/金属氧化物的纳米颗粒的活化的CC。在该过程中,来自碳热休克和金属盐前体的高温是必不可少的,因为前者确保后者提供催化物质的同时有效的碳氧化反应。作者的方法可以扩展到许多碳材料,从而为一系列应用提供了用于表面工程的容易,有效和普遍的策略。

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