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Effects of drying temperature and ethanol concentration on bipolar switching characteristics of natural Aloe vera-based memory devices

机译:干燥温度和乙醇浓度对基于天然芦荟的存储设备的双极转换特性的影响

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摘要

Extracted, formulated, and processed natural Aloe vera has been used as an active layer for memory applications. The functional memory device is realized by a bottom-up structure of ITO/Aloe vera/Al in which the Aloe vera is spin-coated after mixing with different concentrations of ethanol (0-80 wt%) and subsequently dried at different temperatures (50-120 degrees C). From the current density-voltage measurements, the device can exhibit a reproducible bipolar switching characteristic with pure Aloe vera dried at 50 degrees C. It is proposed that charges are transported across the Aloe vera layer via space-charge-limited conduction (SCLC), and clusters of interstitial space formed by the functional groups of acemannans and de-esterified pectins in the dried Aloe vera contribute to the memory effect. The formation of charge traps in the Aloe vera layer is dependent on the drying temperature. The drying temperature of a memory-switching Aloe vera layer can be extended to 120 degrees C with the addition of appropriate amounts of ethanol. The concept of using natural Aloe vera as an active material for memory applications has been demonstrated, and the read memory window, ON/OFF ratio, and retention time are approximately 5.0 V, 10(3), and >10(4) s, respectively.
机译:提取,配制和加工的天然芦荟已用作记忆应用的活性层。通过ITO /芦荟/ Al的自下而上的结构来实现功能存储装置,其中将芦荟与不同浓度的乙醇(0-80 wt%)混合后旋涂,然后在不同的温度下干燥(50) -120摄氏度)。从电流密度-电压测量结果来看,该器件在纯芦荟在50摄氏度下干燥后可以表现出可重现的双极开关特性。建议通过空间电荷限制传导(SCLC)在整个芦荟层中传输电荷,干燥的芦荟中由乙酰甘露聚糖和去酯化果胶的官能团形成的间隙空间簇有助于记忆效应。芦荟层中电荷陷阱的形成取决于干燥温度。可以添加适量的乙醇,将记忆转换芦荟层的干燥温度提高到120摄氏度。已经证明了使用天然芦荟作为活性材料进行存储的概念,并且读取存储窗口,开/关比和保留时间约为5.0 V,10(3)和> 10(4)s,分别。

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