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石墨烯纳米片:合成、分子工程、薄膜、杂化材料以及在能源和分析领域的应用。

Graphene nanosheet: synthesis, molecular engineering, thin film, hybrids, and energy and analytical applications.

机构信息

State Key Laboratory of Electroanalytical Chemistry, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun 130022, Jilin.

出版信息

Chem Soc Rev. 2011 May;40(5):2644-72. doi: 10.1039/c0cs00079e. Epub 2011 Jan 31.

Abstract

The emergence of graphene nanosheet (GN, 2010 Nobel Prize for Physics) has recently opened up an exciting new field in the science and technology of two-dimensional (2D) nanomaterials with continuously growing academic and technological impetus. GN exhibits unique electronic, optical, magnetic, thermal and mechanical properties arising from its strictly 2D structure and thus has many important technical applications. Actually, GN-based materials have enormous potential to rival or even surpass the performance of carbon nanotube-based counterparts, given that cheap, large-scale production and processing methods for high-quality GN become available. Therefore, the studies on GN in the aspects of chemistry, physical, materials, biology and interdisciplinary science have been in full flow in the past five years. In this critical review, from the viewpoint of chemistry and materials, we will cover recent significant advances in synthesis, molecular engineering, thin film, hybrids, and energy and analytical applications of the "star-material" GN together with discussion on its major challenges and opportunities for future GN research (315 references).

摘要

石墨烯纳米片(GN,2010 年诺贝尔物理学奖)的出现,为二维(2D)纳米材料的科学和技术开辟了一个令人兴奋的新领域,其学术和技术推动力持续增长。GN 具有独特的电子、光学、磁、热和机械性能,源于其严格的 2D 结构,因此具有许多重要的技术应用。实际上,基于 GN 的材料具有巨大的潜力,可以与基于碳纳米管的材料相媲美,甚至超越,因为高质量 GN 的廉价、大规模生产和加工方法变得可用。因此,在过去五年中,化学、物理、材料、生物和交叉科学等方面对 GN 的研究一直在全面展开。在这篇重要的综述中,我们将从化学和材料的角度,涵盖 GN 的合成、分子工程、薄膜、杂化材料以及能源和分析应用方面的最新重要进展,并讨论其未来 GN 研究的主要挑战和机遇(315 篇参考文献)。

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