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首页> 外文期刊>CERAMICS INTERNATIONAL >High dielectric and breakdown properties achieved in ternary BaTiO3/MXene/PVDF nanocomposites with low-concentration fillers from enhanced interface polarization
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High dielectric and breakdown properties achieved in ternary BaTiO3/MXene/PVDF nanocomposites with low-concentration fillers from enhanced interface polarization

机译:基于增强型界面极化的低浓度填料的三元BATIO3 / mxene / PVDF纳米复合材料中达到高介电和击穿性能

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Although high permittivity is achieved in barium titanate (BT) filled polymer nanocomposites, severely reduced insulation and breakdown properties are frequently found due to overload and agglomeration of BT nano particles with ultrahigh specific area. To simultaneously realize high permittivity and breakdown strength, in this work, unfunctionalized 2D Ti3C2 MXene nanosheets with 2 wt% weight concentration were introduced to prepare ternary BT/MXene/polymer nanocomposites by solution cast process. Employing low-concentration conductive MXene instead of high-concentration ferroelectric BT could lead to significant improvement of permittivity of ternary composites, ascribed to remarkably increased interface types and enhanced interface polarization. In comparison to binary BT/polymer composites, ternary composites could have slightly improved dielectric loss and conductivity as well as gracefully reduced breakdown strength, attributed to finely retained high interface compatibility and filler dispersion. Ternary composite containing 8 wt% BT and 2 wt% MXene had a permittivity of 77, loss of 0.15 at 100 Hz and breakdown strength of 220 MV m(-1). This work might open the door to large-scale fabrication of promising composites with high permittivity and breakdown strength under low filler loading (similar to 10 wt%).
机译:尽管在钛酸钡(BT)填充的聚合物纳米复合材料中实现了高介电常数,但由于BT纳米颗粒具有超高特定区域,通常会发现绝缘和击穿性能严重降低。为了同时实现高介电常数和击穿强度,在这项工作中,引入了具有2wt%重量浓度的未官能化2D Ti3C2 MXOSHES,以制备通过溶液浇铸方法制备三元bt / mxene /聚合物纳米复合材料。采用低浓度导电MxENE代替高浓度铁电BT可能导致三元复合材料介电常数的显着提高,归因于显着增加的界面类型和增强的界面极化。与二进制Bt /聚合物复合材料相比,三元复合材料可以具有略微改善的介电损耗和导电性以及优雅地降低击穿强度,归因于精细保留的高界面相容性和填充分散体。含有8wt%BT和2wt%MxENE的三元复合材料具有77的介电常数,损耗为0.15,折断强度为220mVm(-1)。这项工作可能会在低填充物负载下打开具有高介电常数和击穿强度的有前途的复合材料的大规模制造的大门(类似于10wt%)。

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