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Solution-Processable Superatomic Thin-Films

机译:溶液可加工的超自眼薄膜

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摘要

Atomically precise nanoscale clusters could assemble into crystalline ionic crystals akin to the atomic ionic solids through the strong electrostatic interactions between the constituent clusters. Here we show that, unlike atomic ionic solids, the electrostatic interactions between nanoscale clusters could be frustrated by using large clusters with long and flexible side-chains so that the ionic cluster pairs do not crystallize. As such, we report ionic superatomic materials that can be easily solution-processed into completely amorphous and homogeneous thin-films. These new amorphous superatomic materials show tunable compositions and new properties that are not achievable in crystals, including very high electrical conductivities of up to 300 S per meter, ultra low thermal conductivities of 0.05 W per meter per degree kelvin, and high optical transparency of up to 92%. We also demonstrate thin-film thermoelectrics with unoptimized ZT values of 0.02 based on the superatomic thin-films. Such properties are competitive to state-of-the-art materials and make superatomic materials promising as a new class of electronic and thermoelectric materials for devices.
机译:原子精确的纳米级簇可以通过构成簇之间的强静电相互作用组装成类似于原子离子固体的结晶离子晶体。在这里,我们表明,与原子离子固体不同,纳米级集群之间的静电相互作用可以通过使用具有长且柔性的侧链的大簇来挫折,使得离子簇对不结晶。因此,我们报告了可以容易地溶液加工成完全无定形和均匀的薄膜的离子超自眼材料。这些新的无定形超导材料显示可调谐组合物和晶体中无法实现的新性质,包括每米高达300秒的高达300秒的电导率,每米每度为kelvin的超低导热率,以及高光学透明度达到92%。我们还展示了薄膜热电学,其具有0.02的未优化ZT值,基于超自眼薄膜。这些性质对最先进的材料具有竞争力,并使超级材料作为一种用于设备的新类电子和热电材料。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2019年第28期|10967-10971|共5页
  • 作者单位

    Columbia Univ Dept Chem New York NY 10027 USA;

    Columbia Univ Dept Chem New York NY 10027 USA;

    Carnegie Mellon Univ Dept Mech Engn Pittsburgh PA 15213 USA;

    Columbia Univ Dept Chem New York NY 10027 USA|Wuhan Univ Sci & Technol Inst Adv Mat & Nanotechnol State Key Lab Refractories & Met Wuhan 430081 Hubei Peoples R China;

    Columbia Univ Dept Appl Phys & Appl Math New York NY 10027 USA;

    Columbia Univ Dept Chem New York NY 10027 USA;

    Columbia Univ Dept Elect Engn New York NY 10027 USA;

    Carnegie Mellon Univ Dept Mech Engn Pittsburgh PA 15213 USA;

    Columbia Univ Dept Chem New York NY 10027 USA;

    Columbia Univ Dept Chem New York NY 10027 USA;

    Columbia Univ Dept Chem New York NY 10027 USA;

    Columbia Univ Dept Elect Engn New York NY 10027 USA;

    Carnegie Mellon Univ Dept Mech Engn Pittsburgh PA 15213 USA;

    Columbia Univ Dept Chem New York NY 10027 USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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