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超薄钒酸锂-石墨烯杂化纳米片中的摇椅式结构用于电调制。

Rocking-chair configuration in ultrathin lithium vanadate-graphene hybrid nanosheets for electrical modulation.

机构信息

Division of Nanomaterials and Nanochemistry, Hefei National Laboratory for Physical Sciences at the Microscale, University of Science and Technology of China , Hefei, Anhui, 230026, PR China.

出版信息

Sci Rep. 2013;3:1246. doi: 10.1038/srep01246. Epub 2013 Feb 13.

Abstract

The ability to control electronic property of a material by externally applied voltage is greatly anticipated in modern electronics, and graphene provide potential application foreground for this issue on account of its exotic ambipolar transport property. In this study, we proposed that inorganic-graphene intercalated nanosheet is an effective solution to optimize the transport property of graphene. As an example, lithium vanadate-graphene (LiVO-graphene) alternately intercalated nanosheets were designed and successfully synthesized. Theoretical calculation implied that its rocking chair configuration may provide a new pathway to switch the carrier in graphene layer between p-type and n-type while the position of embedded Li ions is controlled by an external field. Thus, a demo transistor was fabricated with layer-by-layer overlapping of LiVO-graphene nanosheets which proved that this inorganic-graphene structure could be used for electrical modulation in electronic devices.

摘要

通过外部施加电压来控制材料的电子性质在现代电子学中备受期待,而由于其独特的双极性输运性质,石墨烯为这一问题提供了潜在的应用前景。在本研究中,我们提出无机-石墨烯插层纳米片是优化石墨烯输运性质的有效解决方案。例如,我们设计并成功合成了锂钒氧化物-石墨烯(LiVO-石墨烯)交替插层纳米片。理论计算表明,其摇椅构型可能为在石墨烯层中通过控制外部电场中嵌入的锂离子位置,在 p 型和 n 型之间切换载流子提供一条新途径。因此,我们使用 LiVO-石墨烯纳米片逐层重叠制造了一个晶体管演示,证明这种无机-石墨烯结构可用于电子设备中的电调制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/18a2/3570787/63f925f8bf8b/srep01246-f1.jpg

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