首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Enhancing performance of nonvolatile transistor memories via electron-accepting composition in triphenylamine-based random copolymers
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Enhancing performance of nonvolatile transistor memories via electron-accepting composition in triphenylamine-based random copolymers

机译:通过基于三苯胺的无规共聚物中的电子接受组合物提高非易失性晶体管存储器的性能

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With the rapid advances in organic memory, organic field-effect transistor (OFET) memory has been recognition of the value over the past few years. Although the functional polymer with the Donor-Acceptor (D-A) structure has been widely investigated, little research has been carried out to clarify the relationships among D-A structure of the polymer, capability of charge-transfer, and memory performance. Here, we report the nonvolatile memory characteristics of pentacene-based OFET memory using random copolyimides, poly[4,4-diaminotriphenylamine-hexafluoroisopropylidenediphthalimide-co-4-(N,N-bis(p-aminophenyl)amino)-4-nitroazobenzene-hexafluoroisopropylidenediphthalimide) (PI(TPA-6FDA-DACx)), with feeding ratios of DAC to TPA set as x (where x =0,10, 30,50,70,100). The OFET memory performance based on the molar ratio of DAC to TPA equal to 30:70 represents the best results with the proper charge mobility, on/off current ratio, and memory window. Intriguingly, the memory performance can be enhanced by introducing more D-A monomer in polymer electrets, yet the concomitant inferior growth of pentacene decreases the charge mobility, attributed to the intrinsically destructive arrangement of polymer backbone. Our conclusion points out the importance of polymer arrangement and capability of charge-transfer to the OFET performance and memory characteristics. The comparable results can also be applied for advanced OFET memory devices. (c) 2019 Wiley Periodicals, Inc.
机译:随着有机记忆力的快速进步,有机场效应晶体管(OFET)记忆一直在过去几年中的价值。尽管具有供体受体(D-A)结构的功能性聚合物已被广泛研究,但已经进行了很少的研究,以阐明D-A结构的关系,电荷转移能力和记忆性能。在这里,我们通过随机共酰亚胺报告了基于五苯基的葡萄项记忆的非挥发性记忆特性[4,4-二氨基萘酰胺 - 六氟异丙基噻吩嘧啶-CO-4-(N,N-双苯基苯基)氨基)-4-硝基唑 - 六氟异丙基噻嗪噻嗪)(PI(TPA-6FDA-DACX)),DAC至TPA的喂食比设定为X(其中x = 0,10,30,50,70,100)。基于DAC至TPA的摩尔比的OFET记忆性能等于30:70表示具有适当电荷移动,开/关电流比和内存窗口的最佳效果。有趣的是,通过在聚合物电器中引入更多D-A单体可以增强内存性能,但是五烯酮的伴随较差的增长降低了归因于聚合物主链的内在破坏性排列的电荷迁移率。我们的结论指出了聚合物布置和电荷转移能力的重要性,对满足性能和记忆特征。可比较的结果也可以应用于高级的OFET存储器设备。 (c)2019 Wiley期刊,Inc。

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