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Metal complex modified azo polymers for multilevel organic memories

机译:对多层金属络合物改性偶氮聚合物有机的记忆

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摘要

Multilevel organic memories have attracted considerable interest due to their high capacity of data storage. Despite advances, the search for multilevel memory materials still remains a formidable challenge. Herein, we present a rational design and synthesis of a class of polymers containing an azobenzene-pyridine group (PAzo-py) and its derivatives, for multilevel organic memory storage. In this design, a metal complex (M(Phen)Cl-2, M = Cu, Pd) is employed to modify the HOMO-LUMO energy levels of azo polymers, thereby converting the memory state from binary to ternary. More importantly, this approach enables modulating the energy levels of azo polymers by varying the coordination metal ions. This makes the achievement of high performance multilevel memories possible. The ability to tune the bandgap energy of azo polymers provides new exciting opportunities to develop new materials for high-density data storage.
机译:多级有机吸引了记忆由于他们的高容量相当大的兴趣的数据存储。仍然是一个多层次的记忆材料艰巨的挑战。合理的设计和合成的一类聚合物包含azobenzene-pyridine组(PAzo-py)及其衍生物、多层次有机存储器。复杂(M(苯酚的)Cl-2 M =铜、Pd)是用来修改HOMO-LUMO能级偶氮聚合物,从而把内存状态从二元到三元。方法使调制的能量水平偶氮聚合物通过改变金属的协调离子。性能的多级记忆成为可能。优化偶氮的带隙能量的能力聚合物提供了新的令人兴奋的机会开发新材料为高密度数据存储。

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