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Recent Advances in Functionalized Nanoporous Carbons Derived from Waste Resources and Their Applications in Energy and Environment

机译:功能化纳米多孔的最新进展碳来自浪费资源和他们的在能源和环境的应用程序

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摘要

Nanoporous carbon materials have been widely utilized for myriad applications owing to their intriguing physicochemical properties. Development of green and clean synthetic techniques/procedures to generate nanoporous carbon materials especially derived from inexpensive waste precursors/resources has rejuvenated the chemistry of carbon materials owing to the abundant nature and low cost of these sources and their ability to generate unique surface/porous structures. These nanoporous carbon materials have been heavily explored in multiple sectors such as soil/water remediation, adsorption and separation, catalysis, energy storage/conversion, capture and conversion of carbon dioxide. In this topical review, the recent state-of-the-art research progress achieved in the design and development of waste-derived advanced functionalized porous carbon materials are summarized. The various lab-specific approaches and methodologies involved in synthesizing these materials are discussed in detail. In addition, the potential applications of waste-derived functionalized porous carbons in the fields of environment, energy storage, and conversion applications are highlighted. Finally, a discussion on a few suggestions for future research is concluded. It is believed that this review provide inspiration for many new research activities over a wide range of disciplines.
机译:纳米多孔碳材料被广泛由于用于各种应用程序有趣的物理化学性质。发展绿色和清洁合成技术/程序生成纳米多孔碳材料尤其是来自便宜的前体/资源浪费新生碳的化学材料由于丰富的性质和低成本这些来源及其生成的能力独特的表面/多孔结构。纳米多孔碳材料探索了在土壤/水等多个部门修复、吸附和分离,催化、储能/转换、捕获和二氧化碳的转换。审查,最近最先进的研究设计和开发已经取得的进展废弃物是先进的功能化多孔碳材料进行了总结。lab-specific途径和方法参与合成这些材料详细讨论了。废弃物是功能化的应用多孔碳领域的环境,能量储存和转换应用程序突出显示。建议未来的研究得出的结论。相信本文提供灵感吗许多新的研究活动在一个宽学科的范围。

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