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    • 3. 发明公开
    • Ultrafine particle structure and production method thereof
    • 超凡的Teilchenstruktur和Verfahren zu ihrer Herstellung
    • EP0841703A2
    • 1998-05-13
    • EP97307559.1
    • 1997-09-26
    • Japan Science and Technology CorporationTanaka, Shun-ichiro
    • Tanaka, Shun-ichiroXu, BingShe
    • H01L29/12H01L21/26
    • H01L23/53204B81C1/00492H01L21/314H01L21/32051H01L21/76838H01L23/528H01L2924/0002Y10T428/12181Y10T428/25Y10T428/256Y10T428/257H01L2924/00
    • Ultrafine particle structure composed of a plurality of ultrafine particles disposed continuously on a substrate forming a desired shape. A plurality of the ultrafine particles consist of ultrafine particles of metal, semiconductor, compound, and the like. The ultrafine particles constituting an ultrafine particle structure are produced by disposing a target material having a slit of desired shape on a substrate and irradiating a high energy beam in a slanting direction to an inner wall surface of the target material. Constituent atoms or molecules liberated from the target material by irradiation of a high energy beam in a slanting direction are disposed continuously as a plurality of ultrafine particles on the substrate. By contacting or at least partially bonding between adjacent ultrafine particles, ultrafine particle structure is formed. Such an ultrafine particle structure contributes greatly to realization of ultrafine wirings, ultrafine devices, ultrafine functional materials, and the like which utilize the ultrafine particles.
    • 超细颗粒结构由连续设置在形成所需形状的基材上的多个超细颗粒组成。 多个超细颗粒由金属,半导体,化合物等的超微粒子组成。 通过将具有所需形状的狭缝的目标材料设置在基板上,并将倾斜方向的高能束照射到目标材料的内壁面上,来制造构成超微粒子结构的超微粒子。 通过沿倾斜方向照射高能束而从目标材料释放的成分原子或分子作为多个超细颗粒连续地设置在基板上。 通过在相邻的超细颗粒之间接触或至少部分地结合,形成超微粒子结构。 这种超微粒子结构对于利用超微粒子的超细布线,超微细器件,超细功能材料等的实现有很大的帮助。