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    • 38. 发明申请
    • METHODS FOR FABRICATING A LONG-RANGE ORDERED PERIODIC ARRAY OF NANO-FEATURES, AND ARTICLES COMPRISING SAME
    • 用于制作长期订购的纳米特征的周期性定期阵列的方法和包含相同的文章
    • WO2006078952A1
    • 2006-07-27
    • PCT/US2006/002122
    • 2006-01-23
    • UNIVERSITY OF CALIFORNIAJIN, Sungho
    • JIN, Sungho
    • B05D5/00B05D3/00
    • B82Y25/00B01J23/40B01J35/0013B01J37/0009B82Y10/00B82Y30/00G06N99/002G11B5/855H01F1/009H01F1/405Y10S977/849Y10S977/855Y10S977/858
    • A long range, periodically ordered array of discrete nano-features (10), such as nano-islands, nano-particles, nano-wires, non- tubes, nano-pores, nano-composition-variations, and nano-device-components, are fabricated by propigation of a self-assembling array or nucleation and growth of periodically aligned nano-features. The propagation may be induced by a laterally or circularly moving heat source, a stationary heat source arranged at an edge of the material to be patterned (12), or a series of sequentially activated heaters or electrodes. Advantageously, the long-range periodic array of nano-features (10) may be utilized as a nano-mask or nano- implant master pattern for nano-fabrication of other nano-structures. Ih addition, the inventive long-range, periodically ordered arrays of nano-features are useful in a variety of nanoscale applications such as addressable memories or logic devices, ultra-high-density magnetic recording media, magnetic sensors, photonic devices, quantum computing devices, quantum luminescent devices, and efficient catalytic devices.
    • 长距离定期排列的离散纳米特征阵列(10),如纳米岛,纳米粒子,纳米线,非管,纳米孔,纳米组成变化和纳米器件组件 ,通过自组装阵列的引导或周期性排列的纳米特征的成核和生长来制造。 传播可以由横向或循环移动的热源,布置在待图案化材料(12)的边缘处的固定热源或一系列顺序活化的加热器或电极引起。 有利地,纳米特征(10)的远距离周期性阵列可以用作纳米掩模或纳米植入物主模式,用于纳米制造其他纳米结构。 此外,本发明的长距离定期排列的纳米特征阵列可用于各种纳米级应用,例如可寻址存储器或逻辑器件,超高密度磁记录介质,磁传感器,光子器件,量子计算设备 ,量子发光装置和有效的催化装置。