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Block copolymer self-assembly–directed synthesis of mesoporous gyroidal superconductors

机译:嵌段共聚物自组装定向合成介孔回旋超导体

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摘要

Superconductors with periodically ordered mesoporous structures are expected to have properties very different from those of their bulk counterparts. Systematic studies of such phenomena to date are sparse, however, because of a lack of versatile synthetic approaches to such materials. We demonstrate the formation of three-dimensionally continuous gyroidal mesoporous niobium nitride (NbN) superconductors from chiral ABC triblock terpolymer self-assembly–directed sol-gel–derived niobium oxide with subsequent thermal processing in air and ammonia gas. Superconducting materials exhibit a critical temperature (Tc) of about 7 to 8 K, a flux exclusion of about 5% compared to a dense NbN solid, and an estimated critical current density (Jc) of 440 A cm−2 at 100 Oe and 2.5 K. We expect block copolymer self-assembly–directed mesoporous superconductors to provide interesting subjects for mesostructure-superconductivity correlation studies.
机译:具有周期性有序介孔结构的超导体应具有与其本体类似物非常不同的性质。迄今为止,由于缺乏对此类材料的通用合成方法,迄今为止对此类现象的系统研究很少。我们证明了由手性ABC三嵌段三元共聚物自组装定向溶胶-凝胶衍生的氧化铌形成的三维连续螺旋形介孔氮化铌(NbN)超导体,随后在空气和氨气中进行了热处理。超导体材料的临界温度(Tc)约为7至8 K,与致密的NbN固体相比,通量排阻约为5%,估计的临界电流密度(Jc)为440 A cm −2 在100 Oe和2.5 K下。我们期望嵌段共聚物自组装定向介孔超导体将为介孔结构-超导相关研究提供有趣的主题。

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