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One-Pot Preparation of Mechanically Robust, Transparent, Highly Conductive, and Memristive Metal-Organic Ultrathin Film

机译:机械稳健,透明,高导电,和忆内金属 - 有机超薄膜的一锅制剂

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摘要

The future of 2D flexible electronics relies on the preparation of conducting ultrathin films of materials with mechanical robustness and flexibility in a simple but controlled manner. In this respect, metal-organic compounds present advantages over inorganic laminar crystals owing to their structural, chemical, and functional diversity. While most metal-organic compounds are usually prepared in bulk, recent work has shown that some of them are processable down to low dimensional forms. Here we report the one-pot preparation, carried out at the water-air interface, of ultrathin (down to 4 nm) films of the metal-organic compound [Cu2I2(TAA)](n) (TAA= thioacetamide). The films are shown to be homogeneous over mm(2) areas, smooth, highly transparent, mechanically robust, and good electrical conductors with memristive behaviour at low frequencies. This combination of properties, as well as the industrial availability of the two building blocks required for the preparation, demonstrates their wide range potential in future flexible and transparent electronics.
机译:2D柔性电子器件的未来依赖于制备具有机械稳健性和灵活性的材料的超薄材料,以简单但受控的方式。在这方面,金属 - 有机化合物由于其结构,化学和功能多样性而在无机层状晶体上存在优点。虽然大多数金属 - 有机化合物通常以体积制备,但最近的工作表明它们中的一些是可加工到低尺寸形式的。在这里,我们在金属 - 有机化合物[Cu2I2(TaA)](N)(TaA =硫代乙酰胺)的水 - 有机化合物[Cu 2 I2(TaA)(TaA =硫代乙酰胺)的水 - 空气界面下进行一锅制剂。薄膜显示在MM(2)区域,光滑,高度透明,机械稳健和良好的电导体上具有均匀的,具有低频的忆阻行为。这种性能的组合,以及制备所需的两个构建块的工业可用性,证明了未来灵活和透明电子设备的广泛频率。

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