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High performance superconducting devices enabled by three dimensionally ordered nanodots and/or nanorods

机译:高性能的超导设备,可通过三个有序排列的纳米点和/或纳米棒实现

摘要

Novel articles and methods to fabricate same with self-assembled nanodots and/or nanorods of a single or multicomponent material within another single or multicomponent material for use in electrical, electronic, magnetic, electromagnetic and electrooptical devices is disclosed. Self-assembled nanodots and/or nanorods are ordered arrays wherein ordering occurs due to strain minimization during growth of the materials. A simple method to accomplish this when depositing in-situ films is also disclosed. Device applications of resulting materials are in areas of superconductivity, photovoltaics, ferroelectrics, magnetoresistance, high density storage, solid state lighting, non-volatile memory, photoluminescence, thermoelectrics and in quantum dot lasers.
机译:公开了用于在电,电子,磁,电磁和电光装置中使用的,在另一种单组分或多组分材料内具有单组分或多组分材料的自组装纳米点和/或纳米棒的新颖制品和方法。自组装的纳米点和/或纳米棒是有序阵列,其中由于材料生长过程中的应变最小化而发生有序排列。还公开了一种在沉积原位膜时实现此目的的简单方法。所得材料的器件应用领域包括超导,光伏,铁电,磁阻,高密度存储,固态照明,非易失性存储器,光致发光,热电以及量子点激光器。

著录项

  • 公开/公告号US8536098B2

    专利类型

  • 公开/公告日2013-09-17

    原文格式PDF

  • 申请/专利权人 AMIT GOYAL;

    申请/专利号US201113136357

  • 发明设计人 AMIT GOYAL;

    申请日2011-07-30

  • 分类号H01L39/24;

  • 国家 US

  • 入库时间 2022-08-21 16:47:13

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