可持续和新兴应用的先进碳材料

Aneeqa Bashir, Azka Mehvish, M. Khalil
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引用次数: 2

摘要

先进的碳纳米材料,包括富勒烯、石墨烯和碳纳米管(CNTs),由于其多种化学、物理和电学特性,被认为是工程和科学创新的支柱。可持续碳材料分别采用不同的物理和化学方法制备。此外,还使用制造方法来获得具有理想性能的成分的先进碳单体。从理想的整体来看,不同同素异形体的先进碳纳米材料主要应用于可再生能源、有机光伏和节能技术。由于碳纳米材料的生物相容性,它在增强生物学和药物传递方面具有巨大的潜力。本章提出了可持续碳材料的各种制造方法,并强调了各种应用。此外,石墨烯、碳纳米管(CNT)和富勒烯被认为是递送治疗分子的快速有效的纳米载体。由于先进的碳材料具有可控的多孔结构、高表面积、高导电性、高温稳定性、优异的抗腐蚀性能和复合材料的相容性等特点,可以作为电催化剂、导电添加剂、插层基质和活性材料的理想衬底应用于储能领域。同时,总结了先进碳材料对技术创新和科学应用研究的要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Advanced Carbon Materials for Sustainable and Emerging Applications
Advanced carbon nanomaterials, which comprises fullerene, graphene, and carbon nanotubes (CNTs) are considered as backbone of engineering and scientific Innovation due to their versatile chemical, physical and electrical properties. Sustainable carbon materials are fabricated using different physical and chemical methods, respectively. Moreover, fabrication methods are used to achieve advanced carbon monoliths which are constituents with desirable properties. Keeping a view of desirable monoliths, diverse allotropes of advanced carbon nanomaterials are mostly employed in renewable energy resources, organic photovoltaic, and energy conservation technology, respectively. Carbon nanomaterials offer tremendous potential for enhancing biology and drug delivery because of biocompatibility. The proposed chapter grants a variety of fabrications methods for sustainable carbon materials as well as highlights the miscellaneous applications. Further, graphene, carbon nanotube (CNT) and fullerene are considered as fast and effective nanocarriers for delivering therapeutic molecules. As advanced carbon materials have controllable porous structure, high surface area, high conductivity, high temperature stability, excellent anti-corrosion property and compatibility in composite materials so they can be employed in energy storage as electrocatalysts, electro-conductive additives, intercalation hosts and ideal substrate for active materials. Meanwhile, the chapter sums up the required demands of advanced carbon materials for technological innovation and scientific applied research.
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