Microstructural, compositional, topological and optical properties of plasma polymerized cyclohexane amorphous thin films

被引:0
作者
Md. Abdul Momin
Khandker Saadat Hossain
Abu Hashan Bhuiyan
机构
[1] Bangladesh University of Engineering and Technology (BUET),Department of Physics
[2] University of Dhaka,Department of Physics
来源
Journal of Polymer Research | 2019年 / 26卷
关键词
Cyclohexane; Plasma polymerization; AFM; Band gaps; Topography; Optoelectron;
D O I
暂无
中图分类号
学科分类号
摘要
Synthesis of plasma polymerized cyclohexane (PPCHex) thin films on to glass substrates has been done using a capacitively coupled parallel plate low-pressure glow discharge technique from cyclohexane at room temperature. From scanning electron microscopy, smooth and homogeneous surface of PPCHex thin films is observed and atomic force microscopic micrographs show the roughness of 0.815 to 0.364 nm which also confirm the smooth, homogenous, pinhole free and uniform surface of the PPCHex thin films. The presence of 73.1 and 74.7 percentage of carbon in PPCHex thin films of thicknesses 220 and 350 nm with a small percentage of oxygen is confirmed by the energy dispersive x-ray analysis. The PPCHex thin film is thermally stable up to about 510 K. The structure of PPCHex thin films is observed to vary with film’s thickness by forming new chemical bonds such as O-H stretching, C=C stretching, C≡C stretching, C-O stretching compared to that of the monomer. Allowed direct band gaps of PPCHex thin films are found between 2.97 and 3.61 eV for different thicknesses and allowed indirect band gaps are found to be 1.83 to 2.31 eV. Therefore, the PPCHex could be used in different type of optoelectronic devices.
引用
收藏
相关论文
共 114 条
[1]  
Hwang S(2015)Growth kinetics of plasma-polymerized films Sci Rep 5 11201-242
[2]  
Seo S(2017)J. Polym. Sci., Part A Surf Coat Technol 320 206-552
[3]  
Jeong DC(2002)undefined Chem Mater 14 235-372
[4]  
Wen L(1960)undefined Polym Chem 44 551-38
[5]  
Han JG(2011)undefined Plasma Process Polym 8 367-278
[6]  
Song C(2004)undefined Appl Surf Sci 223 35-60
[7]  
Kim Y(2000)undefined Thin Solid Films 366 272-127
[8]  
Li C(1963)undefined Nature (London) 199 59-136
[9]  
Hsieh JH(2016)undefined Mater Chem Phys 169 120-18
[10]  
Lee YT(2013)undefined Thin Solid Films 534 132-1186