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Opto-electrical properties of amorphous carbon thin films deposited by Aerosol-Assisted Chemical Vapor Deposition

机译:气溶胶辅助化学气相沉积沉积非晶碳薄膜的光学性能

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Amorphous carbon (a-C) thin films was deposited using Aerosol-Assisted CVD (AACVD) method and the properties was discussed. Flow rate of the experimental setup was varied (15, 30, 45 and 60 bubbles per minute) in order to optimize the a-C thin film characteristics and the electrical, optical and structural properties were investigated. The electrical properties was characterized by current-voltage (I-V) characteristics using Solar Simulator system and the analysis stressed on the linear (ohmic) graph for the a-C thin films. Photoresponse characteristics of the deposited a-C was highlighted when being illuminated (AM 1.5 illuminations: 100 mW/cm2, 25°C). Optical characteristics was investigated by UV-Vis-NIR spectroscope and transmittance spectrum exhibit a large transmittance value (>85%) and high absorption coefficient value (>106 cm−1) at the visible range of 390 to 790 nm. For structural properties, Atomic Force Microscope was used for the characterization process to obtain a-C images at atomic level.
机译:使用气溶胶辅助CVD(AACVD)方法沉积非晶碳(A-C)薄膜,讨论了性质。实验装置的流速变化(每分钟15,30,45和60次),以优化A-C薄膜特性和电气,光学和结构性能。使用太阳模拟器系统的电流 - 电压(I-V)特性的特征在于,使用太阳能模拟器系统的特性以及用于A-C薄膜的线性(欧姆)图的分析。沉积A-C的光响应特性在照明时突出显示(AM 1.5照明:100mW / cm 2 ,25°C)。通过UV-Vis-Nir光谱仪研究光学特性,透射谱表现出大的透射率值(> 85%)和高吸收系数(> 10 6 cm -1 )在390至790 nm的可见范围内。对于结构性,原子力显微镜用于表征过程以获得原子水平的A-C图像。

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