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纳米石墨烯的生长、特性和性能。

Growth, characterization, and properties of nanographene.

机构信息

Beijing National Laboratory for Condensed Matter, Physics and Institute of Physics, Chinese Academy of Sciences, Beijing, P R China.

出版信息

Small. 2012 May 7;8(9):1429-35. doi: 10.1002/smll.201101827. Epub 2012 Feb 29.

Abstract

A systematic study on nanographene grown directly on silicon dioxide substrates is reported. The growth is carried out in a remote plasma-enhanced chemical vapor deposition system at a low temperature of around 550 °C with methane gas as the carbon source. Atomic force microscopy is used to characterize the nanographene morphology, and Raman spectroscopy, X-ray photoelectron spectroscopy, and scanning tunneling microscopy are exploited to identify the in-plane sp(2) bonding structures of nanographene samples. Electrical transport properties are measured at various temperatures down to 4 K. Tunneling effects, minimal conductance at the charge-neutral point, sheet resistances, and Dirac point position at different channel lengths are investigated. In addition, nanographene film possesses high transmittance properties, as indicated by transmittance spectra. Nanographene devices are fabricated from rippled structures, and show great promise for strain-gauge sensor applications.

摘要

本文报道了一种在二氧化硅衬底上直接生长的纳米石墨烯的系统研究。该生长是在远程等离子体增强化学气相沉积系统中进行的,温度约为 550°C,以甲烷气体作为碳源。原子力显微镜用于表征纳米石墨烯的形态,拉曼光谱、X 射线光电子能谱和扫描隧道显微镜用于识别纳米石墨烯样品的面内 sp(2)键合结构。在 4 K 以下的不同温度下测量了电输运性能。研究了隧道效应、电荷中性点的最小电导、不同沟道长度的薄层电阻和狄拉克点位置。此外,纳米石墨烯薄膜具有高透过率特性,这可以通过透过率光谱来证明。纳米石墨烯器件是从波纹结构中制造的,对于应变计传感器应用具有很大的潜力。

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