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FlexMat Pub Date : 2024-07-30 DOI:10.1002/flm2.29
Xi Luo, Jiangkai Yu, Haoran Tang, Houji Cai, Wei Xiong, Kai Zhang, Fei Huang, Yong Cao
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Abstract

A novel electron-deficient quinone structure was successfully developed and introduced into the conjugated backbone, significantly enhancing the electron mobility. The resulting polymer demonstrated remarkable insensitivity to film thickness when utilized as the electron transport layer in organic solar cells, presenting a promising solution for the fabrication of large-scale flexible devices in the future.

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我们成功开发出一种新型缺电子醌结构,并将其引入共轭骨架,从而显著提高了电子迁移率。当把这种聚合物用作有机太阳能电池的电子传输层时,它对薄膜厚度的敏感性明显降低,为未来制造大规模柔性设备提供了一种前景广阔的解决方案。
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Cover Image Issue Information Reconfigurable flexible thermoelectric generators based on all‐inorganic MXene/Bi2Te3 composite films A deformation mismatch strategy enables over 120% stretchability of encapsulated serpentine silicon strips for stretchable electronics Principles, fabrication, and applications of halide perovskites-based memristors
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