摘要
石墨烯,一个原子厚的二维sp2杂化碳原子片,填充在六方晶格中,卡因 - 碳距离约为0.142nm。其扩展的蜂窝网络构成了其他重要同素异形体的基本组成部分;它可以堆叠形成3-Dgraphite,滚动以形成1-D-纳米管并包裹以形成0-D-富勒烯。石墨烯中的长距离π共轭产生了其非凡的热,机械和电学性能,这些都是许多理论研究的兴趣,最近成为科学家的激动人心的领域。与其他最有效的材料相比,石墨烯对气体和液体是不可渗透的,具有优异的导热性和更高的电流密度。其所有的特殊性能为纳米器件和纳米系统中使用石墨烯开辟了新的途径,从而将其作为药物靶向材料的突出用途。此外,从高品质石墨烯的机械剥离到碳化硅或金属基材上的直接生长以及在分子水平上利用石墨烯氧化物到新开发的方法的化学路线,概述了几种制造技术。本文的评论者打算强调石墨烯的独特性质,制造技术和更新的应用。此外,我们还讨论了石墨烯在纳米技术,生物医学工程和技术领域的药物靶向的潜力,以及其在电子和光子学等各个领域的创新应用。
关键词: 药物靶向,石墨烯,蜂窝状晶格,纳米材料,一个原子厚度,二维片。
图形摘要
Current Drug Targets
Title:Graphene: A Comprehensive Review
Volume: 18 Issue: 6
关键词: 药物靶向,石墨烯,蜂窝状晶格,纳米材料,一个原子厚度,二维片。
摘要: Graphene, a one-atom thick, two-dimensional sheets of sp2hybridized carbon atoms packed in a hexagonal lattice with a Caron-Carbon distance of about 0.142 nm. Its extended honeycomb network forms the basic building block of other important allotropes; it can be stacked to form 3-Dgraphite, rolled to form 1-D-nanotubes and wrapped to form 0-D-fullerenes. Long-range π conjugation in graphene results in its extraordinary thermal, mechanical and electrical properties, which have been the interest of many theoretical studies and recently became an exciting area for scientists. Graphene is impermeable to gas and liquids, has excellent thermal conductivity and higher current density in comparison to other most effective materials. All of its exceptional properties have opened up new avenues for the use of graphene in nano-devices and nano-systems, which initiated its prominent use as a material for drug targeting. In addition, several fabrication techniques are outlined, starting from the mechanical exfoliation of high-quality graphene to the direct growth on silicon carbide or metal substrates and from the chemical routes utilizing graphene oxide to the newly developed approach at the molecular level. By this article reviewers intend to emphasize on unique properties, fabrication techniques and updated applications of graphene. In addition, we discuss about the potential of graphene in drug targeting in fields of nanotechnology, biomedical engineering and technology and its use for innovations in various fields such as electronics and photonics.
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Cite this article as:
Graphene: A Comprehensive Review, Current Drug Targets 2017; 18 (6) . https://dx.doi.org/10.2174/1389450117666160709023425
DOI https://dx.doi.org/10.2174/1389450117666160709023425 |
Print ISSN 1389-4501 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-5592 |
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