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Direct low-temperature synthesis of graphene on various glasses by plasma-enhanced chemical vapor deposition for versatile, cost-effective electrodes 被引量:12
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作者 Jingyu Sun Yubin Chen +11 位作者 Xin Cai Bangjun Ma Zhaolong Chen manish kr. priydarshi Ke Chen Teng Gao Xiuju Song Qingqing Ji Xuefeng Guo Dechun Zou Yanfeng Zhang Zhongfan Liu 《Nano Research》 SCIE EI CAS CSCD 2015年第11期3496-3504,共9页
在低温度的各种各样的玻璃底层上的 graphene 的没有催化剂、可伸缩的合成具有到象便宜透明电子学和最先进的显示器那样的众多的应用程序的首要的意义。然而,在这个有希望的研究领域以内的系统的学习远这样仍然保持少见。此处,我们用... 在低温度的各种各样的玻璃底层上的 graphene 的没有催化剂、可伸缩的合成具有到象便宜透明电子学和最先进的显示器那样的众多的应用程序的首要的意义。然而,在这个有希望的研究领域以内的系统的学习远这样仍然保持少见。此处,我们用一个低温度的提高血浆的化学蒸汽免职方法在各种各样的眼镜上报导 graphene 的直接生长。如此的一条灵巧、可伸缩的途径在 400600 的一个生长温度范围在各种各样的玻璃底层上保证一致、没有转移的 graphene 展开更多
关键词 等离子增强化学气相沉积 多功能应用 低温合成 玻璃基板 石墨 等离子体增强化学气相沉积法 成本效益 电极
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Fast and uniform growth of graphene glass using confined-flow chemical vapor deposition and its unique applications 被引量:5
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作者 Zhaolong Chen Baolu Guan +11 位作者 Xu-dong Chen Qing Zeng Li Lin Ruoyu Wang manish kr. priydarshi Jingyu Sun Zhepeng Zhang Tongbo Wei Jinmin LI Yanfeng Zhang Yingying Zhang Zhongfan Liu 《Nano Research》 SCIE EI CAS CSCD 2016年第10期3048-3055,共8页
Fast and uniform growth of high-quality graphene on conventional glass is of great importance for practical applications of graphene glass. We report herein a confined-flow chemical vapor deposition (CVD) approach f... Fast and uniform growth of high-quality graphene on conventional glass is of great importance for practical applications of graphene glass. We report herein a confined-flow chemical vapor deposition (CVD) approach for the high- efficiency fabrication of graphene glass. The key feature of our approach is the fabrication of a 2-4 μm wide gap above the glass substrate, with plenty of stumbling blocks; this gap was found to significantly increase the collision probability of the carbon precursors and reactive fragments between one another and with the glass surface. As a result, the growth rate of graphene glass increased remarkably, together with an improvement in the growth quality and uniformity as compared to those in the conventional gas flow CVD technique. These high-quality graphene glasses exhibited an excellent defogging performance with much higher defogging speed and higher stability compared to those previously reported. The graphene sapphire glass was found to be an ideal substrate for growing uniform and ultra-smooth aluminum nitride thin films without the tedious pre-deposition of a buffer layer. The presented confined- flow CVD approach offers a simple and low-cost route for the mass production of graphene glass, which is believed to promote the practical applications of various graphene glasses. 展开更多
关键词 graphene glass confined-flow chemicalvapor deposition transparent heating device epitaxial A1N film
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