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首页> 外文期刊>Nanoscale Research Letters >The Fabrication of Ordered Bulk Heterojunction Solar Cell by Nanoimprinting Lithography Method Using Patterned Silk Fibroin Mold at Room Temperature
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The Fabrication of Ordered Bulk Heterojunction Solar Cell by Nanoimprinting Lithography Method Using Patterned Silk Fibroin Mold at Room Temperature

机译:图案化丝素蛋白模具在室温下通过纳米压印光刻法制备有序块状异质结太阳能电池

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摘要

The performance of organic solar cell is greatly determined by the nanoscale heterojunction morphology, and finding a practical method to achieve advantageous nanostructure remains a challenge. We demonstrate here that ordered bulk heterojunction (OBHJ) solar cell can be fabricated assisted by a simple, cost-effective nanoimprinting lithography method using patterned silk fibroin film mold at room temperature. The P3HT nanogratings were achieved by nanoimprinting lithography (NIL) process, and phenyl-C61-butyric acid methyl ester (PCBM) was spin-coated on the top of P3HT nanogratings. The conducting capacity of P3HT nanograting film has little difference compared with the unimprinted film in the vertical direction, due to the same edge-on chain alignment. However, it can be found that the fabrication of OBHJ nanostructure using room temperature NIL technique with patterned silk fibroin mold is able to promote optical absorption, interfacial area, and bicontinuous pathway. Therefore, the ordered heterojunction morphology plays an important part in improving device performance due to efficient exciton diffusion, dissociation, and reducing charge recombination rate.
机译:有机太阳能电池的性能在很大程度上取决于纳米级异质结的形态,因此寻找一种实用的方法来获得有利的纳米结构仍然是一个挑战。我们在这里证明,可以通过使用图案化的丝素蛋白薄膜模具在室温下通过简单,经济高效的纳米压印光刻方法来辅助制造有序的本体异质结(OBHJ)太阳能电池。通过纳米压印光刻(NIL)工艺获得了P3HT纳米光栅,并在P3HT纳米光栅的顶部旋涂了苯基C61丁酸甲酯(PCBM)。由于相同的边沿链排列,P3HT纳米光栅膜的导电能力与未压印膜在垂直方向上的差异很小。但是,可以发现使用室温NIL技术和图案化的丝素蛋白模具制造OBHJ纳米结构能够促进光吸收,界面面积和双连续路径。因此,由于有效的激子扩散,离解和降低电荷复合率,有序异质结形态在改善器件性能中起着重要作用。

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