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基于分子的设计和纳米多孔碳球的新兴应用。

Molecular-based design and emerging applications of nanoporous carbon spheres.

机构信息

Department of Chemical Engineering, Curtin University, Perth, Western Australia 6845, Australia.

Department of Chemistry and Biochemistry, Kent State University, Kent, Ohio 44242, USA.

出版信息

Nat Mater. 2015 Aug;14(8):763-74. doi: 10.1038/nmat4317.

Abstract

Over the past decade, considerable progress has been made in the synthesis and applications of nanoporous carbon spheres ranging in size from nanometres to micrometres. This Review presents the primary techniques for preparing nanoporous carbon spheres and the seminal research that has inspired their development, presented potential applications and uncovered future challenges. First we provide an overview of the synthesis techniques, including the Stöber method and those based on templating, self-assembly, emulsion and hydrothermal carbonization, with special emphasis on the design and functionalization of nanoporous carbon spheres at the molecular level. Next, we cover the key applications of these spheres, including adsorption, catalysis, separation, energy storage and biomedicine — all of which might benefit from the regular geometry, good liquidity, tunable porosity and controllable particle-size distribution offered by nanoporous carbon spheres. Finally, we present the current challenges and opportunities in the development and commercial applications of nanoporous carbon spheres.

摘要

在过去的十年中,纳米至微米级的多孔碳球的合成和应用已经取得了相当大的进展。本文综述了制备多孔碳球的主要技术以及启发其发展的开创性研究,介绍了其潜在的应用,并揭示了未来的挑战。首先,我们概述了合成技术,包括 Stöber 法和基于模板、自组装、乳液和水热碳化的方法,并特别强调了在分子水平上对多孔碳球的设计和功能化。接下来,我们介绍了这些球体的关键应用,包括吸附、催化、分离、储能和生物医学——所有这些都可能受益于多孔碳球提供的规则几何形状、良好的流动性、可调孔隙率和可控的粒径分布。最后,我们提出了多孔碳球在开发和商业应用中面临的挑战和机遇。

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