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用于可印刷电子的六方氮化硼增强型光学透明聚合物介电油墨

Hexagonal Boron Nitride-Enhanced Optically Transparent Polymer Dielectric Inks for Printable Electronics.

作者信息

Zhu Xiaoxi, Ng Leonard W T, Hu Guohua, Wu Tien-Chun, Um Doo-Seung, Macadam Nasiruddin, Hasan Tawfique

机构信息

Cambridge Graphene Centre University of Cambridge Cambridge CB3 0FA UK.

Department of Electronic Engineering The Chinese University of Hong Kong Shatin Hong Kong S. A. R.

出版信息

Adv Funct Mater. 2020 Aug 3;30(31):2002339. doi: 10.1002/adfm.202002339. Epub 2020 Jun 2.

DOI:10.1002/adfm.202002339
PMID:32774201
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7405982/
Abstract

Solution-processable thin-film dielectrics represent an important material family for large-area, fully-printed electronics. Yet, in recent years, it has seen only limited development, and has mostly remained confined to pure polymers. Although it is possible to achieve excellent printability, these polymers have low (≈2-5) dielectric constants (ε ). There have been recent attempts to use solution-processed 2D hexagonal boron nitride (-BN) as an alternative. However, the deposited -BN flakes create porous thin-films, compromising their mechanical integrity, substrate adhesion, and susceptibility to moisture. These challenges are addressed by developing a "one-pot" formulation of polyurethane (PU)-based inks with -BN nano-fillers. The approach enables coating of pinhole-free, flexible PU+-BN dielectric thin-films. The -BN dispersion concentration is optimized with respect to exfoliation yield, optical transparency, and thin-film uniformity. A maximum ε ≈ 7.57 is achieved, a two-fold increase over pure PU, with only 0.7 vol% -BN in the dielectric thin-film. A high optical transparency of ≈78.0% (≈0.65% variation) is measured across a 25 cm area for a 10 μm thick dielectric. The dielectric property of the composite is also consistent, with a measured areal capacitance variation of <8% across 64 printed capacitors. The formulation represents an optically transparent, flexible thin-film, with enhanced dielectric constant for printed electronics.

摘要

可溶液加工的薄膜电介质是用于大面积全印刷电子器件的一类重要材料。然而,近年来,其发展有限,大多仍局限于纯聚合物。尽管这些聚合物可以实现优异的可印刷性,但它们的介电常数(ε)较低(约为2 - 5)。最近有人尝试使用溶液加工的二维六方氮化硼(h - BN)作为替代材料。然而,沉积的h - BN薄片会形成多孔薄膜,损害其机械完整性、与基底的附着力以及对水分的敏感性。通过开发一种含有h - BN纳米填料的基于聚氨酯(PU)的“一锅法”油墨配方,解决了这些挑战。该方法能够涂覆无针孔的柔性PU + h - BN介电薄膜。h - BN的分散浓度根据剥落产率、光学透明度和薄膜均匀性进行了优化。在介电薄膜中仅含有0.7体积%的h - BN时,实现了最大ε≈7.57,相比纯PU增加了两倍。对于10μm厚的电介质,在25平方厘米的面积上测得的光学透明度约为78.0%(变化约0.65%)。该复合材料的介电性能也很稳定,在64个印刷电容器上测得的面电容变化小于8%。该配方代表了一种光学透明、柔性的薄膜,具有增强的介电常数,适用于印刷电子器件。

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