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High-k Polymer Nanocomposites as Gate Dielectrics for Organic Electronics Applications

机译:高k聚合物纳米复合材料用作有机电子应用的栅极电介质

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Motivated by the recent development in organic electronics such as organic field effect transistors (OFETs), printed electronics,..etc., these emerging technologies have received increasing attention. In addition to the organic semiconductor, gate dielectrics for organic electronics have been the focus of recent R&D attention as well. For this application, the dielectric materials should ideally be compatible with flexible substrate, solution processible, and exhibit larger capacitance to increase the drain current while operating at low biases. Complementary to conventional high dielectric constant (k) inorganic materials and those readily accessible and solution processible polymer materials, polymer/inorganic hybrid films which could be deposited by spin-coating are well suited to provide a better solution. In this study, a solution processible nanocomposite containing benzocyclobutene (BCB) and barium titanate (BT) nanoparticles was developed. Dielectric and electrical properties of the as-prepared BT nanocomposites were investigated. k values of 50 and capacitance density of 19 nF/cm2 was achieved for a 50 vol. % BT loading. And the dielectric breakdown strength could be maintained 1.65 MV/cm, which is even higher than that of some other polymers themselves. The preliminary result of the electrical output of OFET prototype incorporating high k BT/BCB nanocomposite as gate insulator layer shows that the OFET can be operated at very low voltage. This demonstrates the feasibility of using high k BT/BCB nanocomposite as gate dielectric insulator in the OFET.
机译:由于诸如有机场效应晶体管(OFET),印刷电子等有机电子领域的最新发展,这些新兴技术受到越来越多的关注。除有机半导体外,有机电子产品的栅极电介质也是最近研发关注的焦点。对于此应用,理想的介电材料应与柔性基板兼容,可溶液处理,并表现出较大的电容以增加漏极电流,同时在低偏置下工作。作为对传统的高介电常数(k)无机材料以及易于获得和可溶液加工的聚合物材料的补充,可以通过旋涂沉积的聚合物/无机杂化膜非常适合提供更好的解决方案。在这项研究中,开发了一种可溶液处理的纳米复合材料,其中含有苯并环丁烯(BCB)和钛酸钡(BT)纳米颗粒。研究了所制备的BT纳米复合材料的介电和电性能。对于50体积,获得了50的k值和19nF / cm 2的电容密度。 BT负载百分比。介电击穿强度可以维持在1.65 MV / cm,甚至高于其他一些聚合物本身的击穿强度。将高k BT / BCB纳米复合材料用作栅极绝缘层的OFET原型的电输出的初步结果表明,OFET可以在非常低的电压下运行。这证明了在OFET中使用高k BT / BCB纳米复合材料作为栅极介电绝缘体的可行性。

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