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    • 25. 发明授权
    • Nanoparticle production method and production device and nanoparticle preservation method
    • 纳米颗粒生产方法及生产装置及纳米颗粒保存方法
    • US07922786B2
    • 2011-04-12
    • US12213977
    • 2008-06-26
    • Tomonori KawakamiBo LiMitsuo Hiramatsu
    • Tomonori KawakamiBo LiMitsuo Hiramatsu
    • B22F9/06
    • C09C3/00B01J19/0013B01J19/121B01J2219/00063B01J2219/00094B01J2219/00126B01J2219/00137B01J2219/0871B01J2219/0877B01J2219/0879C01P2004/64
    • With this invention, in a nanoparticle production method, wherein nanoparticles are produced by irradiating a laser light irradiation portion 2a of a to-be-treated liquid 8 with a laser light, in which suspended particles are suspended, to pulverize the suspended particles in laser light irradiation portion 2a, laser light irradiation portion 2a of to-be-treated liquid 8 is cooled. In this case, by the cooling of to-be-treated liquid 8, the respective suspended particles are cooled in their entireties. When the portion 2a of this to-be-treated liquid 8 is irradiated with the laser light, the laser light is absorbed at the surfaces of the suspended particles at portion 2a. Since to-be-treated liquid 8 is cooled during this process, significant temperature differences arise between the interiors and surfaces of the suspended particles and between the surfaces of the suspended particles and the to-be-treated liquid at laser light irradiation portion 2a, and highly efficient nanoparticulation is realized.
    • 利用本发明,在纳米颗粒制造方法中,其中通过用悬浮颗粒悬浮的激光照射待处理液体8的激光照射部分2a来制造纳米颗粒,以将激光中的悬浮颗粒粉碎 光照射部分2a,待处理液体8的激光照射部分2a被冷却。 在这种情况下,通过冷却待处理液体8,各个悬浮颗粒全部被冷却。 当该待处理液体8的部分2a被激光照射时,激光在部分2a处被悬浮颗粒的表面吸收。 由于待处理液体8在该过程中被冷却,因此在悬浮颗粒的内部和表面之间以及在激光照射部分2a处悬浮颗粒和待处理液体的表面之间产生显着的温度差, 实现了高效的纳米微粒化。