b) of ITO coated glass/Crystal Violet (CV) dy'/> Effect of Fullerene Nanoparticles on Barrier Height of Crystal Violet Dye Based Organic Device
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Effect of Fullerene Nanoparticles on Barrier Height of Crystal Violet Dye Based Organic Device

机译:富勒烯纳米粒子对结晶紫染料基有机器件阻挡层高度的影响

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In this work, we have estimated the barrier height (Φb) of ITO coated glass/Crystal Violet (CV) dye/Aluminium (AI) based organic device and subsequently we have also observed the effect of fullerene (C60) nanoparticles on Φb. Presence of C60 nanoparticles reduce barrier height and provides easy path for charge percolation. We have used ITO coated glass as front electrode and aluminium as back electrode to form the organic device. This organic device has been prepared with and without C60 nanoparticles by using spin coating technique. We have measured the steady state current-voltage (I- V) characteristics of the device to estimate barrier height (Φb) of the device. Φb is reduced from 0.87 eV to 0.75 eV in the presence of C60 nanoparticles. The barrier height is also estimated by using another alternative method which is known as Norde method. By using Norde method, Φb is estimated which reduces from 0.83 eV to 0.79 eV in presence of C60 nanoparticles. Both the methods show good consistency with each other. Reduction of the interfacial barrier height in presence of fullerene indicates the enhancement of charge injection through the metal - organic dye interface. By suitable addition of C60 nanoparticles within the CV dye it is possible to modify the barrier height and enhance the current injection through metal-organic dye interface which also allows the device to be turned on at much lower voltages.
机译:在这项工作中,我们估算了势垒高度(Φ b )的ITO涂层玻璃/结晶紫(CV)染料/铝(AI)基有机器件,随后我们还观察到了富勒烯(C 60 )Φ上的纳米颗粒 b 。存在C 60 纳米粒子降低了势垒高度,并为电荷渗透提供了简便的途径。我们已经使用ITO涂层玻璃作为前电极,并使用铝作为后电极来形成有机器件。此有机设备已准备好有无C 60 纳米粒子通过使用旋涂技术。我们已经测量了器件的稳态电流-电压(I-V)特性,以估计势垒高度(Φ b )的设备。 Φ b 在C存在下从0.87 eV降低到0.75 eV 60 纳米粒子。障碍物高度也可以通过使用另一种称为Norde方法的替代方法来估算。用诺德法,Φ b 估计在存在C的情况下从0.83 eV降低到0.79 eV 60 纳米粒子。两种方法都显示出良好的一致性。在富勒烯存在下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的增强。通过适当添加C 60 CV染料中的纳米颗粒可以修饰势垒高度并增强通过金属-有机染料界面的电流注入,这也允许在低得多的电压下打开设备。

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