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首页> 外文期刊>Journal of Semiconductors >Effect of COOH-functionalized SWCNT addition on the electrical and photovoltaic characteristics of Malachite Green dye based photovoltaic cells
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Effect of COOH-functionalized SWCNT addition on the electrical and photovoltaic characteristics of Malachite Green dye based photovoltaic cells

机译:COOH官能化的SWCNT添加对孔雀石绿色染料基光伏电池电学和光伏特性的影响

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We report the effect of COOH-functionalized single walled carbon nanotubes (COOH-SWCNT) on the electrical and photovoltaic characteristics of Malachite Green (MG) dye based photovoltaic cells. Two different types of photovoltaic cells were prepared, one with MG dye and another by incorporating COOH-SWCNT with this dye. Cells were characterized through different electrical and photovoltaic measurements including photocurrent measurements with pulsed radiation. From the dark current-voltage (I-V) characteristic results, we observed a certain transition voltage (V_(th)) for both the cells beyond which the conduction mechanism of the cells change sharply. For the MG dye, V_(th) is 3.9 V whereas for COOH-SWCNT mixed with this dye, V_(th) drops to 2.7 V. The device performance improves due to the incorporation of COOH-SWCNT. The open circuit voltage and short circuit current density change from 4.2 to 97 mV and from 108 to 965 μA/cm~2 respectively. Observations from photocurrent measurements show that the rate of growth and decay of the photocurrent are quite faster in the presence of COOH-SWCNT. This observation indicates a faster charge separation processes due to the incorporation of COOHSWCNT in the MG dye cells. The high aspect ratio of COOH-SWCNT allows efficient conduction pathways for the generated charge carriers.
机译:我们报告了基于孔雀石绿(MG)染料的光伏电池的电气和光伏特性的COOH功能化单壁碳纳米管(COOH-SWCNT)的影响。制备了两种不同类型的光伏电池,一种使用MG染料,另一种通过将COOH-SWCNT与这种染料掺混。通过不同的电和光伏测量(包括脉冲辐射的光电流测量)对电池进行了表征。从暗电流-电压(I-V)特性结果中,我们观察到两个电池都具有一定的跃迁电压(V_(th)),超过此电压时,电池的传导机制会急剧变化。对于MG染料,V_(th)为3.9 V,而对于与该染料混合的COOH-SWCNT,V_(th)降至2.7V。由于结合了COOH-SWCNT,器件性能得以改善。开路电压和短路电流密度分别从4.2到97 mV和从108到965μA/ cm〜2变化。从光电流测量中观察到的结果表明,在存在COOH-SWCNT的情况下,光电流的生长和衰减速率相当快。该观察结果表明由于在MG染料细胞中掺入了COOHSWCNT,电荷分离过程更快。 COOH-SWCNT的高长宽比可为生成的电荷载流子提供有效的传导途径。

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