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Flexible dielectric film with high energy density based on chitin/boron nitride nanosheets

机译:基于几丁质/氮化物纳米片的高能量密度,柔性介电膜

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Polymer-based film capacitors have attracted considerable attention owing to their important applications in both electronics and electrical systems. However, ever-growing environmental challenges stimulate a great demand for exploring renewable dielectric materials. Herein, flexible film dielectrics based on regenerated chitin and boron nitride nanosheets (BNNSs) were fabricated, for the first time, through a straightforward low-temperature dissolution/regeneration process, in which a "green" KOH/urea aqueous system was chosen as both the solvent of chitin and the exfoliation agent of BNNSs. Benefit from the excellent intrinsic properties of embedded BNNS, substantially elevated dielectric performances were achieved, including much suppressed dielectric loss along with significantly enhanced breakdown strength. Particularly, an ultrahigh charge-discharge efficiency of above 90% could be well-maintained in composites with only 6 wt% BN loading, even the applied electric field up to 400 MVm(-1), therefore resulting in a marvelous discharge energy density of 8.67 J cm(-3). Furthermore, aside targeted excellent dielectric properties, the resultant composites also possessed improved mechanical and thermal properties. This strategy developed here not only broadens the application of chitin, but also opens a new window for the establishment of next-generation environment-friendly dielectrics with superb dielectric properties.
机译:由于电子和电气系统中的重要应用,基于聚合物的薄膜电容器引起了相当大的关注。然而,不断增长的环境挑战刺激了探索可再生介质材料的大量需求。这里,首次通过直接的低温溶解/再生过程制备基于再生的甲壳素和氮化硼纳米片(BNNS)的柔性膜电介质,其中选择“绿色”KOH /尿素含水系统甲壳菌素的溶剂和BNNS的剥离剂。从嵌入式BNN的优异内部性质中受益,实现了基本上升高的介电性能,包括大大抑制介电损耗以及显着增强的击穿强度。特别地,甚至施加的电场高达400mVm(-1)的施加的电场即使施加的电场也可以很好地保持高于90%的超高电荷 - 放电效率8.67 j cm(-3)。此外,除了靶向优异的电介质性质,所得复合材料还具有改善的机械和热性能。此策略在这里开发的策略不仅拓宽了几丁质的应用,而且还开辟了建立具有精湛介电性能的下一代环保电介质的新窗口。

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