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对于一个以离子门控碳纳米管共阴极的串联有机太阳能电池的生产环境法
对于一个以离子门控碳纳米管共阴极的串联有机太阳能电池的生产环境法
JoVE Journal
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JoVE Journal Engineering
Ambient Method for the Production of an Ionically Gated Carbon Nanotube Common Cathode in Tandem Organic Solar Cells

对于一个以离子门控碳纳米管共阴极的串联有机太阳能电池的生产环境法

Full Text
9,925 Views
14:37 min
November 5, 2014

DOI: 10.3791/52380-v

Alexander B. Cook1,2, Jonathan D. Yuen2, Joseph W. Micheli1, Albert G. Nasibulin3, Anvar Zakhidov1,2

1Physics Department,The University of Texas at Dallas, 2The NanoTech Institute,The University of Texas at Dallas, 3Department of Applied Physics,Aalto University School of Science

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Please note that some of the translations on this page are AI generated. Click here for the English version.

提出了一种在环境条件下以并联配置制造有机光伏串联器件的方法。这些器件具有空气处理的半透明碳纳米管共阴极。

以下实验的总体目标是表明,可以完全在周围环境中创建叠层太阳能电池,而不涉及高真空沉积过程。这是通过在两个独立的氧化铟锡图案玻璃基板上制造两个有机光伏子电池作为第二步来实现的,碳纳米管公共电极和 GA 电极层压到器件的顶部。步态将允许控制公共电极的功函数,该电极将充当两个有机光伏子电池的阴极。

接下来将离子液体放在碳纳米管电极的顶部,将两者压在一起,形成一个浸渍有离子液体的共同碳纳米管电极。结果表明,碳纳米管电极可以通过充电有效地转化为阴极,并且根据照明下器件电流电压特性的测量,可以在器件上观察到并联串联太阳能电池的性能。与真空处理等现有工艺相比,该技术的主要优势在于我们可以在环境条件下进行。

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