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一步射频化学气相沉积法合成金属和金属氧化物纳米粒子修饰的石墨烯

One-Step RF-CVD Method for the Synthesis of Graphene Decorated with Metal and Metal Oxide Nanoparticles.

作者信息

Ramakrishnan S, Jelmy E J, Senthilkumar R, Rangarajan Murali, Kothurkar Nikhil K

机构信息

Centre of Excellence in Advanced Materials and Green Technologies, Amrita School of Engineering, Amrita Vishwa Vidyapeetham University, Amrita Nagar, Ettimadai, Coimbatore 641112, Tamil Nadu, India.

出版信息

J Nanosci Nanotechnol. 2018 Feb 1;18(2):1089-1096. doi: 10.1166/jnn.2018.13961.

Abstract

Bilayer and few layer-graphene (Gr) with noble metal (Ag and Au) and TiO2 nanoparticles were synthesized using atmospheric pressure radio frequency chemical vapor deposition (APRF-CVD). The precursors for the formation of the respective nanoparticles were dissolved in ethanol and injected into the APRF-CVD containing a Cu foil catalyst at 1000 °C. The graphene obtained had a blistered morphology similar to bubble-wrap. The bubble-like protrusions on the graphene sheet were caused by large nanoparticle clusters (~220 nm) formed below the graphene sheets. Smaller nanoparticles (10-80 nm) were also observed on top of the graphene sheets. Encapsulation of the nanoparticles with graphene, to yield core-shell particles was observed. Similarly, secondary growth of carbon nanotubes (CNTs) from the Au nanoparticles was observed. The average full width half maxima (FWHM) of 2D bands in the Raman spectra indicate that the graphene formed was predominantly bilayer graphene for Gr-TiO2 (55 ± 1.72 cm-1), and few-layer graphene for Gr-Ag (76 ± 22 cm-1) and Gr-Au (88 ± 4.7 cm-1). Raman spectroscopy also showed evidence for the doping of graphene and surface-enhanced Raman sensitivity (SERS) in the materials. These electronic properties of graphene with nanoparticles are relevant to various applications such as optoelectronics, catalysis, chemical and biological sensing.

摘要

采用常压射频化学气相沉积法(APRF-CVD)合成了含有贵金属(银和金)以及二氧化钛纳米颗粒的双层和少层石墨烯(Gr)。将用于形成相应纳米颗粒的前驱体溶解在乙醇中,并在1000℃下注入到含有铜箔催化剂的APRF-CVD装置中。所得到的石墨烯具有类似于气泡垫的起泡形态。石墨烯片上的气泡状突起是由在石墨烯片下方形成的大纳米颗粒簇(约220纳米)引起的。在石墨烯片的顶部也观察到了较小的纳米颗粒(10-80纳米)。观察到纳米颗粒被石墨烯包裹,形成了核壳颗粒。同样,观察到金纳米颗粒上有碳纳米管(CNT)的二次生长。拉曼光谱中二维带的平均半高宽(FWHM)表明,对于Gr-TiO2,形成的石墨烯主要是双层石墨烯(55±1.72厘米-1),对于Gr-Ag(76±22厘米-1)和Gr-Au(88±4.7厘米-1)则是少层石墨烯。拉曼光谱还显示了材料中石墨烯掺杂和表面增强拉曼灵敏度(SERS)的证据。石墨烯与纳米颗粒的这些电子特性与光电、催化、化学和生物传感等各种应用相关。

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