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首页> 外文期刊>Nature Communications >Polymer/molecular semiconductor all-organic composites for high-temperature dielectric energy storage
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Polymer/molecular semiconductor all-organic composites for high-temperature dielectric energy storage

机译:聚合物/分子半导体全体有机复合材料,用于高温介电能量储存

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Dielectric polymers for electrostatic energy storage suffer from low energy density and poor efficiency at elevated temperatures, which constrains their use in the harsh-environment electronic devices, circuits, and systems. Although incorporating insulating, inorganic nanostructures into dielectric polymers promotes the temperature capability, scalable fabrication of high-quality nanocomposite films remains a formidable challenge. Here, we report an all-organic composite comprising dielectric polymers blended with high-electron-affinity molecular semiconductors that exhibits concurrent high energy density (3.0?J?cm -3 ) and high discharge efficiency (90%) up to 200?°C, far outperforming the existing dielectric polymers and polymer nanocomposites. We demonstrate that molecular semiconductors immobilize free electrons via strong electrostatic attraction and impede electric charge injection and transport in dielectric polymers, which leads to the substantial performance improvements. The all-organic composites can be fabricated into large-area and high-quality films with uniform dielectric and capacitive performance, which is crucially important for their successful commercialization and practical application in high-temperature electronics and energy storage devices.
机译:用于静电能量储存的介电聚合物在高温下遭受低能量密度和效率差,这限制了它们在苛刻环境电子设备,电路和系统中的使用。尽管将绝缘的无机纳米结构掺入介电聚合物促进温度能力,但高质量的纳米复合材料薄膜的可伸缩制造仍然是一个突起的攻击。在这里,我们报告了一种全有机复合材料,其包含与高电子亲和分子半导体混合的介电聚合物,其表现出同时的高能量密度(3.0〜J?CM -3)和高放电效率(90%),最多200?°C ,远优于现有的介电聚合物和聚合物纳米复合材料。我们证明了分子半导体通过强大的静电吸引力固定自由电子,并妨碍电荷注入和在介电聚合物中运输,这导致了显着的性能改善。所有有机复合材料可以制造成具有均匀电介质和电容性能的大面积和高质量薄膜,这对于它们的成功商业化和高温电子和能量存储装置的实际应用是至关重要的。

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