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Electropolymerized films as a molecular platform for volatile memory devices with two near-infrared outputs and long retention time

机译:电聚合膜作为具有两个近红外输出和长保留时间的易失性存储设备的分子平台

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Surface-confined molecular logic gates have great potential as memory devices. We present in this article the uses of electropolymerized films as a molecular platform for volatile memory devices. A vinyl-substituted cyclometalated ruthenium-amine hybridized compound has been polymerized by reductive electropolymerization. The resulting polymeric films display two well-defined redox processes at +0.32 and +0.68 V vs. Ag/AgCl, leading to three well-separated redox states. Characterizations of these films by XPS and TEM techniques are presented. The singly-and doubly-oxidized states of the film possess intense absorption at 1070 and 700 nm, respectively. These polymeric films exhibit promising three-stage near-infrared electrochromism and the best contrast ratios (AT%) of 52% at 1070 nm and 76% at 700 nm have been achieved. The colors of the film at three redox stages are purple, brown, and sky blue, respectively. The electrochromism is featured by a long retention time at all three stages (infinity at-0.20 V, 4 h at +0.55 V, and 30 min at +1.05 V, respectively). The singly-and doubly-oxidized states of a film about 10 nm thick have been used to build a surface-confined Set/Reset flip-flop memory with two electrochemical inputs and two near-infrared optical outputs. By using another intermediate state between the singly-and doubly-oxidized states a multi-valued logic system has been demonstrated.
机译:表面受限的分子逻辑门作为存储设备具有巨大的潜力。我们在本文中介绍了电聚合膜作为易失性存储设备的分子平台的用途。乙烯基取代的环金属化钌-胺杂化化合物已通过还原电聚合而聚合。所得的聚合物膜在相对于Ag / AgCl的+0.32和+0.68 V下显示出两个明确定义的氧化还原过程,从而导致三个完全分离的氧化还原状态。介绍了通过XPS和TEM技术对这些薄膜进行的表征。膜的单和双氧化态分别在1070和700 nm处具有强烈的吸收。这些聚合物薄膜展现出令人鼓舞的三阶段近红外电致变色现象,并且在1070 nm处的最佳对比度(AT%)在700 nm处达到了76%。胶片在三个氧化还原阶段的颜色分别是紫色,棕色和天蓝色。电致变色的特征在于在所有三个阶段的保留时间较长(分别在-0.20 V时为无穷大,在+0.55 V时为4 h,在+1.05 V时为30 min)。约10 nm厚的膜的单双氧化态已被用于构建具有两个电化学输入和两个近红外光学输出的表面受限的置位/复位触发器存储器。通过在单氧化态和双氧化态之间使用另一个中间态,已证明了多值逻辑系统。

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