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Recent progress in organic resistance memory with small molecules and inorganic-organic hybrid polymers as active elements

机译:以小分子和无机-有机杂化聚合物为活性元素的有机电阻存储器的最新进展

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摘要

Organic resistance memory has attracted a lot of attention due to its high scalability, flexibility, easy processing, low fabrication cost, etc. Organic small molecules, which possess well-defined structures and more accurate experiment-simulation matching, have been widely explored as active materials for application in organic resistance memory. In addition, inorganic-organic hybrid polymers are expected to have charming resistive switching properties because they can potentially combine the advantages of both inorganic materials and organic polymers. This review presents the recent progress of organic resistance memory based on several families of organic small molecules and some typical inorganic-organic hybrid polymers, and discussion of their structure-property relationships.
机译:有机电阻存储器具有高可扩展性,灵活性,易加工性,低制造成本等优点,因此备受关注。有机小分子具有明确的结构和更精确的实验模拟匹配,已被广泛研究为活性有机小分子。用于有机电阻存储器的材料。另外,由于无机-有机杂化聚合物可以潜在地结合无机材料和有机聚合物的优点,因此它们有望具有迷人的电阻转换性能。这篇综述介绍了基于几个有机小分子家族和一些典型的无机-有机杂化聚合物的有机电阻存储器的最新进展,并讨论了它们的结构-性质关系。

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