Invention Grant
US09440213B2 Nanometer-size-particle production apparatus, nanometer-size-particle production process, nanometer-size particles, zinc/zinc oxide nanometer-size particles, and magnesium hydroxide nanometer-size particles
有权
纳米尺寸颗粒生产装置,纳米尺寸颗粒生产工艺,纳米尺寸颗粒,锌/氧化锌纳米尺寸颗粒和氢氧化镁纳米尺寸颗粒
- Patent Title: Nanometer-size-particle production apparatus, nanometer-size-particle production process, nanometer-size particles, zinc/zinc oxide nanometer-size particles, and magnesium hydroxide nanometer-size particles
- Patent Title (中): 纳米尺寸颗粒生产装置,纳米尺寸颗粒生产工艺,纳米尺寸颗粒,锌/氧化锌纳米尺寸颗粒和氢氧化镁纳米尺寸颗粒
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Application No.: US14114033Application Date: 2012-04-24
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Publication No.: US09440213B2Publication Date: 2016-09-13
- Inventor: Yoshiaki Hattori , Shinfuku Nomura , Hiromichi Toyota , Shinobu Mukasa
- Applicant: Yoshiaki Hattori , Shinfuku Nomura , Hiromichi Toyota , Shinobu Mukasa
- Applicant Address: JP Matsuyama-shi
- Assignee: NATIONAL UNIVERSITY CORPORATION EHIME UNIVERSITY
- Current Assignee: NATIONAL UNIVERSITY CORPORATION EHIME UNIVERSITY
- Current Assignee Address: JP Matsuyama-shi
- Agency: Sughrue Mion, PLLC
- Priority: JP2011-101531 20110428
- International Application: PCT/JP2012/002799 WO 20120424
- International Announcement: WO2012/147334 WO 20121101
- Main IPC: B01J19/12
- IPC: B01J19/12 ; C01G9/02 ; H05H1/46 ; B22F9/14 ; B82Y40/00 ; C01F5/14 ; B82Y30/00 ; B01J19/08

Abstract:
A nanometer-size-particle production apparatus is provided which can prevent the occurrence of waste fluids, and which makes quick and continuous syntheses feasible while suppressing damages to the electrode.The present invention is a nanometer-size-particle production apparatus for synthesizing nanometer-size particles in a liquid by means of plasma in liquid, and comprises: a container for accommodating the liquid therein; an electromagnetic-wave generation device for generating a high-frequency wave, or a microwave; an electrode conductor whose leading end makes contact with the liquid to supply the high-frequency wave or the microwave to the liquid; a covering portion being disposed into the liquid so as to cover a leading-end upside of the electrode conductor; a metallic chip being composed of a metal making a raw material of nanometer-size particles, and having a leading end that is disposed to face to a leading-end section of the electrode conductor; and a feed device for feeding out the leading end of the metallic chip with respect to the leading-end section of the electrode conductor; the leading end of the electrode conductor having a configuration that is a non-edge configuration; and the electrode conductor, except for the leading end, having an axially-orthogonal cross-sectional area that is larger than an axially-orthogonal cross-sectional area of the metallic chip.
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