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Optical and electrical properties of cobalt chloride doped polyvinyl alcohol polyvinylpyrrolidone blend

机译:氯化钴掺杂聚乙烯醇聚乙烯吡咯烷酮共混物的光学和电学性能

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摘要

Films of cobalt chloride doped polyvinyl alc. - polyvinylpyrrolidone blend were prepd. by soln. casting method, in the doping range 0 wt​% up to 42 wt​%. These films were characterized by XRD, UV-​Visible spectrometry, FTIR, thermal anal. and elec. measurements. The films were semi-​cryst., with an av. crystallite size of few nanometers. The optical band gap due to indirect allowed transitions (in k-​space) decreases from 4.6 eV for 1.5 wt​% doping level to 4.0 eV at 35 wt​% doping level. In addn., absorption peaks were obsd. at 2.3 eV, 3.0 eV and 1.7 eV, which indicate that doping results in formation of allowed energy bands within the forbidden gap. The Urbach energy, which measures the width of band tails within the forbidden gap, is found to significantly decrease with increase in doping level. DC elec. measurements show a good fit for 3-​D Variable Range Hopping model of cond. The temp. variation of elec. resistivity obeys the Arrhenius relation, from which the activation energy obtained is found to decrease from 4.1 eV for 1.5 wt​% doping level to 3.1 eV for 19 wt​% doping level. (c) 2014 American Institute of Physics.
机译:氯化钴掺杂的聚乙烯铝薄膜。 -制备聚乙烯吡咯烷酮共混物。通过Soln。铸造方法,掺杂范围为0 wt%至42 wt%。这些膜通过XRD,紫外可见光谱,FTIR,热肛门进行了表征。和电子。测量。这部电影是半哭的,有影音。微晶尺寸为几纳米。由于间接允许的跃迁(在k空间中)而导致的光学带隙从1.5 wt%掺杂水平的4.6 eV降至35 wt%掺杂水平的4.0 eV。另外,观察到吸收峰。在2.3 eV,3.0 eV和1.7 eV时,表明掺杂导致在禁带内形成允许的能带。测量掺杂禁区中带隙尾部宽度的Urbach能量随掺杂水平的增加而显着降低。直流电测量结果显示非常适合cond的3-D可变范围跳跃模型。温度电子的变化。电阻率遵循Arrhenius关系式,从中发现获得的活化能从1.5 wt%掺杂水平的4.1 eV降至19 wt%掺杂水平的3.1 eV。 (c)2014美国物理研究所。

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