首页> 外文会议>35th IEEE Photovoltaic Specialists Conference >Role of single walled carbon nanotubes in improving the efficiency of P3HT:PCBM solar cells - impedance spectroscopy and morphology studies
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Role of single walled carbon nanotubes in improving the efficiency of P3HT:PCBM solar cells - impedance spectroscopy and morphology studies

机译:单壁碳纳米管在提高P3HT:PCBM太阳能电池效率中的作用-阻抗谱和形态学研究

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Bulk heterojunction (BHJ) solar cells of P3HT:PCBM doped with SWNTs were fabricated which doubled the efficiency over the undoped devices. No surface modifications of SWNTs were done during fabrication. Absorption and photoluminescence spectra along with photocurrent and spectral response of the devices show that SWNTs do not result in any significant charge generation at the P3HT:SWNT interface indicating that possible type-II heterojunctions between s-SWNTs and P3HT were dominated by the effects due to metallic tubes. At an optimum concentration of 0.75 wt% SWNTs, a 10% improvement in effective mobility was observed. In the voltage range of solar cell operation, two orders increase in injected current density is observed which has an Ohmic behavior. From the peak voltage of the capacitance-voltage characteristics, it was inferred that SWNTs reduce the Vbi of the devices by only 60 mV. From the Cole-Cole in the diffusion transport regime, it was observed that the injected carrier life time gets lowered from 0.628 ms to 0.125 ms with SWNTs. A negative capacitance was observed in reverse bias in devices with SWNTs at low frequencies which has similar dependence on applied field as that in forward bias. This is attributed to the large reverse current injected through SWNT energy levels, making the effects of space charge, trapping, and recombination significant. The surface roughness and volume were more than doubled with SWNTs which resulted in increased cathode coverage area affecting the charge collection efficiency. Charge extraction efficiency is analyzed using the photocurrent loss normalized to the dark current where two orders of magnitude improvement is observed with SWNTs.
机译:制备了掺有SWNT的P3HT:PCBM的体异质结(BHJ)太阳能电池,其效率是未掺杂器件的两倍。在制造过程中,没有对单壁碳纳米管进行表面改性。器件的吸收和光致发光光谱以及光电流和光谱响应表明,SWNT不会在P3HT:SWNT界面上产生任何明显的电荷,这表明s-SWNT和P3HT之间可能的II型异质结受以下因素影响:金属管。在0.75 wt%SWNTs的最佳浓度下,观察到有效迁移率提高了10%。在太阳能电池工作的电压范围内,观察到注入电流密度增加了两个数量级,这具有欧姆行为。从电容-电压特性的峰值电压可以推断出,SWNT将器件的V bi 仅降低了60 mV。从Cole-Cole的扩散传输机制中可以看出,使用SWNTs注入的载流子寿命从0.628毫秒降低到0.125毫秒。在低频下具有SWNT的器件中,在反向偏置中观察到负电容,其对施加电场的依赖性与正向偏置中的相似。这归因于通过SWNT能级注入的大反向电流,从而使空间电荷,俘获和重组的影响显着。 SWNTs的表面粗糙度和体积增加了一倍以上,这导致阴极覆盖面积增加,从而影响了电荷收集效率。使用归一化为暗电流的光电流损耗分析电荷提取效率,其中使用SWNT观察到两个数量级的改善。

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