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    • 3. 发明专利
    • Method for manufacturing crystal metal-alloy product using metallic glass or metallic amorphous, and crystal metal-alloy product
    • 使用金属玻璃或金属非晶体制造晶体金属合金产品的方法和晶体金属合金产品
    • JP2010202907A
    • 2010-09-16
    • JP2009047815
    • 2009-03-02
    • Tohoku Univ国立大学法人東北大学
    • FUKUHARA MIKIOSHA KOKUKYOINOUE AKIHISAABE HIROYANISHIKAWA HIROSHITAKEMOTO TADASHI
    • C22C1/00C23F1/00
    • PROBLEM TO BE SOLVED: To solve such problem as that since a meso-scopic metallic cluster is different in catalyst, electron, photo-electron, magnetic characteristic, with a bulky metal, caused by the effect of comparative large surface area and few atomic number, this meso-scopic metal cluster is expected to the future development, but this scale is accumulated by making small into nano-meter size and further, is necessary to operate in the room temperature, and thus, crystal metal or alloy manufacturing method with the conventional mechanical or thermal cutting method, chemical-physical vapor-deposition coating method or corrosion method, can be not used. SOLUTION: An integrated fine structure (cell) which performs supper-fine patterning or quantum dot-tunneling, is manufactured with a manufacturing method for the metal or the alloy having nano-crystal by utilizing amorphous/crystal transition in the room temperature and by selectively melting the compositional elements in a metallic glass or metallic amorphous in the acidic solution without adding the outer energy, such as heat, light, electric charge. COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:为了解决由于比较大的表面积和效果而引起的催化剂,电子,光电子,磁特性与庞大的金属不同的中观观察金属簇的问题 原子序数很少,这种中观的金属簇有望在未来发展,但是这种尺度是通过将其纳入纳米尺寸而进一步累积的,这是在室温下运行所必需的,因此,晶体金属或合金制造 方法采用常规的机械或热切割方法,化学物理气相沉积涂覆法或腐蚀方法,不得使用。 解决方案:通过在室温下利用非晶/晶体转变的金属或具有纳米晶体的合金的制造方法制造执行超精细图案化或量子点隧穿的集成精细结构(单元) 并且通过选择性地熔化金属玻璃中的组成元素或在酸性溶液中金属无定形的溶液中,而不增加诸如热,光,电荷的外部能量。 版权所有(C)2010,JPO&INPIT