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High Performance Nonvolatile Transistor Memories Utilizing Functional Polyimide-Based Supramolecular Electrets

机译:利用功能性聚酰亚胺基超分子驻极体的高性能非易失性晶体管存储器

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We report pentacene-based organic field-effect transistor memory devices utilizing supramolecular electrets, consisting of a polyimide, PI(6FOH-ODPA), containing hydroxyl groups for hydrogen bonding with amine functionalized aromatic rings (AM) of 1-aniline (AM1), 2-naphthylamine (AM2), 2-aminoanthracene (AM3), and 1-aminopyrene (AM4). The effect of the phenyl ring size and composition of AM1-AM4 on the hole-trapping capability of the fabricated devices was investigated systematically. Under an operating voltage under +/- 40 V, the prepared devices using the electrets of 100% AM1-AM4/PI ratios exhibited a memory window of 0, 8.59, 25.97, and 29.95 V, respectively, suggesting that the hole-trapping capability increased with enhancing phenyl ring size. The memory window was enhanced as the amount of AM in PI increased. Furthermore, the devices showed a long charge-retention time of 10(4)s with an ON/OFF current ratio of around 10(3)-10(4) and multiple switching stability over 100 cycles. This study demonstrated that the electrical characteristics of the OFET memory devices could be manipulated through the chemical compositions of the supramolecular electrets.
机译:我们报告了利用超分子驻极体的并五苯有机场效应晶体管存储器件,该器件由聚酰亚胺PI(6FOH-ODPA)组成,其中包含羟基与1-苯胺(AM1)的胺官能化芳香环(AM)进行氢键键合, 2-萘胺(AM2),2-氨基蒽(AM3)和1-氨基py(AM4)。系统地研究了苯环的大小和AM1-AM4的组成对所制造器件的空穴捕获能力的影响。在+/- 40 V的工作电压下,使用100%AM1-AM4 / PI比率的驻极体制备的器件的存储窗口分别为0、8.59、25.97和29.95 V,这表明空穴捕获能力随着苯环尺寸的增加而增加。随着PI中AM数量的增加,内存窗口得到了增强。此外,这些器件显示出10(4)s的长电荷保持时间,其开/关电流比约为10(3)-10(4),并且在100个周期内具有多个开关稳定性。这项研究表明,可以通过超分子驻极体的化学成分来控制OFET存储设备的电学特性。

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