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    • 1. 发明申请
    • REPROGRAMMABLE PARALLEL NANOMANUFACTURING
    • 可再制造的并行纳米制造
    • WO2008118191A3
    • 2008-10-02
    • PCT/US2007/080080
    • 2007-10-01
    • UNIVERSITY OF SOUTH CAROLINACRAWFORD, Thomas, M.
    • CRAWFORD, Thomas, M.
    • C23C16/00
    • A method of producing a nanoscale structure having substantially immobilized nanoparticles arranged at a pre-determined patterned is generally disclosed. First, a curable polymeric solution is placed within a well defined by a wafer. The curable polymeric solution includes a curable polymeric material and a magnetically coated nanoparticle. The well is positioned adjacent to an atomically-smooth medium. A recording head is moved in a predetermined manner to produce a magnetic field profile that substantially immobilizes the magnetically coated nanoparticle within the curable polymeric solution in the well. The curable polymeric solution is cured such that the magnetically coated nanoparticle remains substantially immobilized after the magnetic field profile is removed.
    • 一般公开了生产纳米级结构的方法,该纳米级结构具有以预定图案排列的基本上固定的纳米颗粒。 首先,将可固化的聚合物溶液放置在由晶片限定的井内。 可固化聚合物溶液包含可固化聚合物材料和磁性涂覆纳米粒子。 该井位于原子光滑介质附近。 记录头以预定方式移动以产生磁场分布,该磁场分布基本上将磁涂覆的纳米粒子固定在井中的可固化聚合物溶液中。 可固化的聚合物溶液被固化,使得磁性涂覆的纳米颗粒在去除磁场分布之后基本保持不动。
    • 6. 发明申请
    • REPROGRAMMABLE PARALLEL NANOMANUFACTURING
    • 可再制造的并行纳米制造
    • WO2008118191A2
    • 2008-10-02
    • PCT/US2007080080
    • 2007-10-01
    • UNIV SOUTH CAROLINACRAWFORD THOMAS M
    • CRAWFORD THOMAS M
    • H01L21/20
    • H01F1/0063B82Y25/00B82Y30/00H01F1/0054H01F1/111
    • A method of producing a nanoscale structure having substantially immobilized nanoparticles arranged at a pre-determined patterned is generally disclosed. First, a curable polymeric solution is placed within a well defined by a wafer. The curable polymeric solution includes a curable polymeric material and a magnetically coated nanoparticle. The well is positioned adjacent to an atomically-smooth medium. A recording head is moved in a predetermined manner to produce a magnetic field profile that substantially immobilizes the magnetically coated nanoparticle within the curable polymeric solution in the well. The curable polymeric solution is cured such that the magnetically coated nanoparticle remains substantially immobilized after the magnetic field profile is removed.
    • 一般公开了生产纳米级结构的方法,该纳米级结构具有以预定图案排列的基本上固定的纳米颗粒。 首先,将可固化的聚合物溶液放置在由晶片限定的井内。 可固化聚合物溶液包含可固化聚合物材料和磁性涂覆纳米粒子。 该井位于原子光滑介质附近。 记录头以预定方式移动以产生磁场分布,该磁场分布基本上将磁涂覆的纳米粒子固定在井中的可固化聚合物溶液中。 可固化的聚合物溶液被固化,使得磁性涂覆的纳米颗粒在去除磁场分布之后基本保持不动。