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合成具有长保持时间的高性能非易失浮栅存储晶体管的环戊二噻吩-二吡咯并吡咯二酮给体-受体共聚物

Synthesis of Cyclopentadithiophene-Diketopyrrolopyrrole Donor-Acceptor Copolymers for High-Performance Nonvolatile Floating-Gate Memory Transistors with Long Retention Time.

机构信息

Department of Energy Science and Engineering , Daegu Gyeongbuk Institute of Science and Technology (DGIST) , Daegu 42988 , Republic of Korea.

Department of Chemistry and RIGET , Gyeongsang National University , Jinju 52828 , Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2020 Jan 15;12(2):2743-2752. doi: 10.1021/acsami.9b20307. Epub 2020 Jan 3.

Abstract

Organic flash memories that employ solution-processed polymer semiconductors preferentially require internal stability of their active channel layers. In this paper, a series of new donor-acceptor copolymers based on cyclopentadithiophene (CDT) and diketopyrrolopyrrole (DPP) are synthesized to obtain high performance and operational stability of nonvolatile floating-gate memory transistors with various additional donor units including thiophene, thiophene-vinylene-thiophene (CDT-DPP-TVT), selenophene, and selenophene-vinylene-selenophene. Detailed analyses on the photophysical, two-dimensional grazing incident X-ray diffraction, and bias stress stability are discussed, which reveal that the CDT-DPP-TVT exhibits excellent bias stress stability over 10 s. To utilize the robust nature of CDT-DPP-TVT, floating-gate transistors are fabricated by embedding Au nanoparticles between Cytop layers as a charge storage site. The resulting memory devices reveal bistable current states with high on/off current ratio larger than 10 and each state can be distinguished for more than 1 year, indicating a long retention time. Moreover, repetitive writing-reading-erasing-reading test clearly supports the reproducible memory operation with reversible and reliable electrical responses. All these results suggest that the internal stability of CDT-DPP-TVT makes this copolymer a promising material for application in reliable organic flash memory.

摘要

采用溶液处理聚合物半导体的有机快闪存储器优先需要其有源沟道层的内部稳定性。在本文中,合成了一系列基于环戊二噻吩(CDT)和二酮吡咯并吡咯(DPP)的新型给体-受体共聚物,以获得具有各种附加给体单元的非易失性浮栅存储晶体管的高性能和操作稳定性,包括噻吩、噻吩-亚乙烯基-噻吩(CDT-DPP-TVT)、硒吩和硒吩-亚乙烯基-硒吩。详细分析了光物理、二维掠入射 X 射线衍射和偏置应力稳定性,结果表明 CDT-DPP-TVT 具有超过 10 秒的优异偏置应力稳定性。为了利用 CDT-DPP-TVT 的稳健性质,在 Cytop 层之间嵌入 Au 纳米粒子作为电荷存储位点来制造浮栅晶体管。所得存储器件显示出具有大于 10 的高导通/关断电流比的双稳定电流状态,并且每个状态可以区分超过 1 年,表明保留时间长。此外,重复写入-读取-擦除-读取测试清楚地支持具有可逆和可靠电响应的可重复存储操作。所有这些结果表明,CDT-DPP-TVT 的内部稳定性使其成为应用于可靠的有机快闪存储器的有前途的材料。

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