以乙烷碳为前驱体,HW-CVD法合成纳米晶碳化硅薄膜

Amit Pawbake, V. Waman, R. Waykar, A. Mayabadi, R. Kulkarni, H. Pathan, S. Jadkar
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引用次数: 1

摘要

以乙烷(C2H6)为碳前驱体,采用热丝化学气相沉积(HW-CVD)法制备了氢化纳米晶碳化硅(nc-SiC:H)薄膜。研究了沉积压力对结构和光学性能的影响。通过低角x射线衍射(XRD)、拉曼光谱和傅里叶变换红外光谱(FTIR)分析证实了nc-SiC:H薄膜的形成。沉积压力与沉积速率成反比关系。光学带隙值、ETauc和E04随沉积压力的增大而增大。事实上,用E04方法估计的光学带隙值比用Tauc图计算的ETauc值要高。最后,在优化的沉积压力(450 mTorr)下,制备了具有玻璃/nc-SiC:H/Al结构的光探测器,并对其光响应进行了研究。要提高纳米碳化硅:氢薄膜的质量,使其应用于光电探测器,还需要进一步的研究。
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Synthesis of nanocrystalline silicon carbide thin films by HW-CVD using ethane carbon precursor for photo detector application
Hydrogenated nanocrystalline silicon carbide (nc-SiC:H) films were prepared by hot wire chemical vapor deposition (HW-CVD) method using ethane (C2H6) as a carbon precursor. The influence of deposition pressure on structural and optical properties was investigated. The formation of nc-SiC:H films was confirmed by low angle x-ray diffraction (XRD), Raman spectroscopy and Fourier transform infrared (FTIR) spectroscopy analysis. An inverse relation between deposition pressure and deposition rate was observed. Optical band gap values, ETauc and E04 increases with increase in deposition pressure. In fact, optical band gap values estimated from E04 method was found higher than the ETauc values calculated from Tauc's plot. Finally, at optimized deposition pressure (450 mTorr), a photo detector having configuration glass/nc-SiC:H/Al have been fabricated and its photo response was studied. Further study is required to improve the quality of nc-SiC:H films to make use in photo detectors.
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