Effect of Different Concentrations of Titanium Dioxide Nanoparticles on the Potential Barrier of Organic Device

Sudipta Sen, N. Manik
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Abstract

Abstract Present work has studied potential barrier of Phenosafranin dye based organic device and has observed influence of different concentrations of titanium dioxide nanoparticles on this parameter. We have made different devices by taking different weight ratios of the dye – nanoparticles blend which are 1:1, 1:2, 1:3 and 1:4. These organic devices have been formed by varying the concentrations of titanium dioxide nanoparticles keeping same dye content. One device is also formed without any nanoparticle to compare influence of nanoparticle on potential barrier of the device. These devices are formed by sandwiching the dye – nanoparticle blend in between the Indium Tin Oxide coated glass and Aluminium coated mylar sheet. The potential barrier is measured from device’s I-V plot and also by Norde function. These two methods remain in good agreement showing that potential barrier is mostly decreased when the concentration of the titanium dioxide nanoparticles is highest in the blend of Phenosafranin dye and titanium dioxide nanoparticles. The ratio of dye –nanoparticle blend of 1:4 shows lowest potential barrier and it is highest when Phenosafranin dye based organic device is made without any nanoparticle. The reduced potential barrier in the presence of higher concentration of nanoparticles can be ascribed to improved filling of traps. Lowered potential barrier at metal – organic contact will improve the charge flow resulting in better performance of the device.
不同浓度二氧化钛纳米颗粒对有机器件电位势垒的影响
摘要本工作研究了吩沙弗兰染料基有机器件的势垒,并观察了不同浓度的二氧化钛纳米颗粒对该参数的影响。我们采用不同重量比的染料-纳米颗粒混合物,分别为1:1,1:2,1:3和1:4,制作了不同的装置。这些有机装置是通过改变二氧化钛纳米颗粒的浓度来形成的,同时保持相同的染料含量。还形成了一个不含任何纳米颗粒的器件,以比较纳米颗粒对器件势垒的影响。这些装置是通过将染料纳米颗粒混合物夹在氧化铟锡涂层玻璃和铝涂层聚酯薄膜之间形成的。电位势垒由设备的I-V图和Norde函数测量。这两种方法的结果一致,表明了当二氧化钛纳米粒子与吩沙弗兰染料的混合浓度最高时,势垒的降低幅度最大。当染料与纳米颗粒的比例为1:4时,其电势势垒最低,当不添加纳米颗粒时,其电势势垒最高。在较高浓度的纳米粒子存在下,电位势垒的降低可归因于改善了陷阱的填充。降低金属与有机接触处的势垒可以改善电荷流动,从而提高器件的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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