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Controllable and Versatile Electrophoretic Deposition Technology for Monolithic Organic Memory Devices

机译:单片有机记忆装置可控和多功能电泳沉积技术

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摘要

Scaling up organic nanofilm deposition from the laboratory scale to the industrial scale is an important challenge for the booming organic electronics. Herein, we propose a high-efficiency technology for organic nanofilm deposition called electrophoretic deposition (EPD). EPD was used to produce scalable films based on an ingenious molecular design by introducing the pyridinium group and flexible substituents to versatile solution-processable organic salts. EPD films with an area of 10(4) mm(2) and controllable film thickness ranging from 50 nm to 1.55 mu m can be easily fabricated using an organic solvent under different deposition conditions. Compared with traditional spin-coated films, the superior electrochemical and mechanical properties of EPD films are ascribed to their compact molecular packing, high purity, and uniform morphology. Evaluation of 2745 device units integrated into a 10(4) mm(2)monolithic organic memory device showed that 95% of the device units possessed excellent binary data-storage performance with high stability and reproducibility, small reading bias (1.0 V), and large ON/OFF ratio (>10(3)). Furthermore, decoating tests of EPD-based films and devices by the process of reverse EPD with switched electrode polarity suggested the potential application for information storage security and active environmental protection by simultaneously separating and recycling metal electrodes and organic materials.
机译:将有机纳米丝沉积从实验室规模扩大到工业规模是蓬勃发展的有机电子产品的重要挑战。在此,我们提出了一种用于电泳沉积(EPD)的有机纳米丝沉积的高效技术。通过将吡啶鎓基团和柔性取代基引入通用的溶液 - 加工的有机盐,基于巧妙的分子设计来生产基于巧妙的分子设计的可缩放薄膜。在不同沉积条件下,可以在不同的沉积条件下使用有机溶剂容易地制造具有10(4)毫米(2)和可控膜厚度的环形膜和可控的薄膜厚度。与传统的旋涂膜相比,EPD膜的优异电化学和机械性能均匀于其紧凑的分子包装,高纯度和均匀形态。将2745个装置单元的评估集成到10(4)个单片有机记忆装置中,显示95%的器件单元具有出色的二元数据存储性能,具有高稳定性和再现性,小读数偏置(1.0 V),和较大的开/关比(> 10(3))。此外,通过具有开关电极极性的反向EPD的过程对EPD的薄膜和装置进行欺诈测试,提出了通过同时分离和再循环金属电极和有机材料来进行信息存储安全和有源环境保护的潜在应用。

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