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Superconductivity in Films of Pb/PbSe Core/Shell Nanocrystals

机译:Pb / PbSe核/壳纳米晶体薄膜的超导性

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Superconductivity in films of electronically coupled colloidal lead nanocrystals is reported. The coupling between partides is in situ controlled through the conversion of the oxides present on the surface of the nanoparticles to chalcogenides. This transformation allows for a 10~9-fold increase in the conductivity. The temperature of the onset of the superconductivity was found to depend upon the degree of coupling of the nanoparticles in the vicinity of the insulator-superconductor transition. The critical current density of the best sample of Pb/PbSe nanocrystals at zero magnetic field was determined to be 4 x 10~3 A/cm~2. In turn, the critical field of the sample shows 50-fold enhancement compared to bulk Pb.
机译:据报道,电子耦合的胶体铅纳米晶体的薄膜具有超导性。通过将存在于纳米颗粒表面上的氧化物转化为硫属化物,原位控制各部分之间的偶联。这种转变可使电导率增加10〜9倍。发现超导开始的温度取决于绝缘体-超导体转变附近的纳米颗粒的偶联程度。在零磁场下,最佳的Pb / PbSe纳米晶体样品的临界电流密度确定为4 x 10〜3 A / cm〜2。反过来,样品的临界场显示出与块状Pb相比增强了50倍。

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