Effect of Carboxyl-Functionalized Single Walled Carbon Nanotubes on the Interfacial Barrier Height of Malachite Green Dye Based Organic Device

Sudipta Sen, N. Manik
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引用次数: 11

Abstract

In this study, we have estimated the interfacial barrier height (Φb) of Indium Tin Oxide (ITO) coated glass/Malachite Green (MG) dye/Aluminium (Al) based organic device and subsequently we have also observed the effect of carboxylfunctionalized SWCNT (COOH-SWCNT) on the Φb. Presence of COOH-SWCNT reduces the interfacial barrier height as SWCNT acts as filler and provides easy path for charge percolation. We have used ITO coated glass and aluminium as front electrode and back electrode respectively to form the organic device. This organic device has been prepared with and without COOH-SWCNT by using spin coating technique. We have measured the steady state current-Voltage (I-V) characteristics of the device to estimate the interfacial barrier height (Φb) of the device. Φb is reduced from 0.67 eV to 0.59 eV in the presence of COOH-SWCNT. We have also estimated the Φb by using Norde’s Method. This method also shows a reduction of interfacial barrier height from 0.72 eV to 0.64 eV due to incorporation of COOH-SWCNT. Both the methods show good consistency with each other. Reduction of the interfacial barrier height in presence of COOH-SWCNT indicates the enhancement of charge injection through the metal-organic dye interface. By suitable doping or addition of COOH-SWCNT within the MG dye it is possible to reduce the barrier height and enhance the current injection through metal-organic dye interface.
羧基功能化单壁碳纳米管对孔雀石绿染料有机器件界面势垒高度的影响
在这项研究中,我们估计了氧化铟锡(ITO)涂层玻璃/孔雀石绿(MG)染料/铝(Al)基有机器件的界面屏障高度(Φb),随后我们还观察了羧基功能化SWCNT (COOH-SWCNT)对Φb的影响。cooh - swcnts的存在降低了界面势垒高度,因为swcnts充当填充物,并为电荷渗透提供了便利的途径。我们分别使用ITO镀膜玻璃和铝作为前电极和后电极,形成有机器件。采用自旋镀膜技术制备了含cooh - swcnts和不含cooh - swcnts的有机器件。我们测量了器件的稳态电流-电压(I-V)特性,以估计器件的界面势垒高度(Φb)。在cooh - swcnts的存在下,Φb从0.67 eV降低到0.59 eV。我们还利用Norde方法估算了Φb。该方法还表明,由于cooh - swcnts的掺入,界面势垒高度从0.72 eV降低到0.64 eV。两种方法具有良好的一致性。cooh - swcnts存在时界面势垒高度的降低表明通过金属-有机染料界面的电荷注入增强。通过在MG染料中适当掺杂或添加COOH-SWCNT,可以降低势垒高度,增强金属-有机染料界面的电流注入。
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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