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A flexible organic resistance memory device for wearable biomedical applications

机译:用于可穿戴生物医学应用的柔性有机电阻存储设备

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摘要

Parylene is a Food and Drug Administration (FDA)-approved material which can be safely used within the human body and it is also offers chemically inert and flexible merits. Here, we present a flexible parylene-based organic resistive random access memory (RRAM) device suitable for wearable biomedical application. The proposed device is fabricated through standard lithography and pattern processes at room temperature, exhibiting the feasibility of integration with CMOS circuits. This organic RRAM device offers a high storage window (> 10(4)), superior retention ability and immunity to disturbing. In addition, brilliant mechanical and electrical stabilities of this device are demonstrated when under harsh bending (bending cycle > 500, bending radius < 10 mm). Finally, the underlying mechanism for resistance switching of this kind of device is discussed, and metallic conducting filament formation and annihilation related to oxidization/redox of Al and Al anions migrating in the parylene layer can be attributed to resistance switching in this device. These advantages reveal the significant potential of parylene-based flexible RRAM devices for wearable biomedical applications.
机译:聚对二甲苯是经美国食品药品监督管理局(FDA)批准的材料,可以在人体中安全使用,并且还具有化学惰性和柔韧性。在这里,我们介绍了一种适用于可穿戴生物医学应用的柔性基于聚对二甲苯的有机电阻式随机存取存储器(RRAM)设备。所提出的器件是通过室温下的标准光刻和图案工艺制造的,具有与CMOS电路集成的可行性。这种有机RRAM器件具有高存储窗口(> 10(4)),出色的保留能力和抗干扰性。此外,在剧烈弯曲(弯曲周期> 500,弯曲半径<10 mm)时,该设备还具有出色的机械和电气稳定性。最后,讨论了这种装置的电阻转换的基本机理,并且与在聚对二甲苯层中迁移的Al和Al阴离子的氧化/氧化还原有关的金属导电丝的形成和an灭可以归因于该装置中的电阻转换。这些优势揭示了基于聚对二甲苯的柔性RRAM器件在可穿戴生物医学应用中的巨大潜力。

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