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Less-Common Nanostructures: Nanobuds: A Micro-Review

机译:较少常见的纳米结构:纳米水平:微观审查

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Background: Synthesis, properties, structural peculiarities, and applications of nanobuds and related nanostructures are discussed. In addition, few relevant patents to the topic have been reviewed and cited. According to observed properties and those predicted by DFT calculations,the nanobuds are semiconducting and stable in normal conditions, can accept adatoms and molecules. They contain a relatively chemically inert carbon nanotubes and more active fullerene species and can be compatible with a variety of other materials, in particular polymers. In addition to nanobudsfor SWCNTs, the nanobuds with graphene, small fullerenes or metal nanobud-like structures are also known. Method: We have undertaken an extensive search of bibliographic databases for peer-reviewed research literature using a focused review question and inclusion/exclusion criteria. Thecharacteristics of screened papers were described and critically compared. Results: Thirty-six papers were included in the review, mainly from high-impact international journals. The published articles correspond to the range 2006-2016; the term “nanobuds” appeared in 2006after their discovery. The reports included approaches of the synthesis of carbon nanobuds, their formation mechanism, in situ engineering, different modes of attachment of fullerene on carbon nanotubes, DFT and MD calculations, nanobuds containing small fullerenes and graphene nanobuds, informationabout related noble metal nanobuds, and applications of carbon nanobuds. Conclusion: The findings of this review confirm the importance of novel less-common nanostructures on the basis of carbon for fundamental science, their unusual properties and current and possible applications.
机译:背景:讨论了纳米浮点和相关纳米结构的合成,性质,结构特性和应用。此外,还有一些相关专利对该主题进行了审查和引用。根据观察到的性质和通过DFT计算预测的性质,纳米型在正常条件下是半导体和稳定的,可以接受adatoms和分子。它们含有相对化学惰性的碳纳米管和更活跃的富勒烯种类,并且可以与各种其他材料,特别是聚合物相容。除了用于SWCNT的纳米之外,还已知具有石墨烯,小富勒烯或金属纳米状结构的纳米浮点。方法:我们采用了使用聚焦审查问答和包含/排除标准进行对同行评审的研究文献的广泛搜索。描述且危重地描述了筛选纸的术。结果:审查中包含三十六篇论文,主要来自高影响国际期刊。公布的文章对应于2006 - 2016年的范围;术语“ nanobuds”他们发现的发现。该报告包括碳纳米管道合成的方法,它们的地层机制,原位工程,富勒烯附着的不同模式,富含碳纳米管,DFT和MD计算,含有小富勒烯和石墨烯纳米的纳米,信息交流相关贵金属纳米以及应用碳纳米润。结论:本综述结果证实了基于基本科学的碳,其不寻常的财产和当前和可能的应用程序的基础上的新颖较少常见纳米结构的重要性。

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