Optimizing the property of cross-linked carbazole-based polymer for efficient hole transport in bulk-heterojunction photovoltaic device

KIMIKA Pub Date : 2019-06-06 DOI:10.26534/KIMIKA.V30I1.13-17
Shienna Marie Pontillas, M. Marquez, F. Sumera, R. Advíncula
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Abstract

Thin films made of cross-linked carbazole pendants of poly(ethylmethacrylate) deposited on indium tin oxide (ITO) was assessed for potential use as hole transport layer (HTL) in a fabricated photovoltaic cell configuration (ITO/PCDTBT/PCBM/Al). Before measurement, the film was designed to have uniform molecular weight, cross-linked carbazole for high electron mobility, high transmittance at the visible wavelength range and smoothness in morphology. Results showed that the film  provided 70 times more of current value at open circuit voltage than without the film under light illumination, at optimized thickness from 15 to 25 cycles of deposition at  25 mV/s using cyclic voltammetry.
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优化体异质结光伏器件中高效空穴传输的交联咔唑基聚合物的性能
本文评价了在氧化铟锡(ITO)上沉积交联咔唑类聚甲基丙烯酸乙酯悬垂体薄膜作为空穴传输层(HTL)在光电电池结构(ITO/ pcdbt /PCBM/Al)中的潜在应用。在测量之前,设计薄膜具有均匀的分子量,交联咔唑具有高电子迁移率,在可见波长范围内具有高透射率和光滑的形貌。结果表明,在光照条件下,薄膜在开路电压下提供的电流值是无薄膜时的70倍,在25 mV/s的循环伏安法下,薄膜的最佳厚度为15 ~ 25次。
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