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    • 1. 发明申请
    • METHOD OF PRODUCTION OF A DEPOSIT OF NANOPARTICLES WITH INCREASED ADHESION AND DEVICE FOR IMPLEMENTATION OF SUCH A METHOD
    • 生产具有增加粘合剂的纳米颗粒沉积物的方法和用于实施这种方法的装置
    • US20110305838A1
    • 2011-12-15
    • US13143242
    • 2010-01-05
    • Hai Trieu PhanJean-Antoine GrussOlivier Poncelet
    • Hai Trieu PhanJean-Antoine GrussOlivier Poncelet
    • B05D3/02B05C5/00
    • C23C24/00
    • A device intended to accomplish the deposition of particles of nanometric size on at least one part of the surface (4) of a substrate (2), including a first enclosure (14) intended to contain a liquid (8) charged with particles (6) of nanometric size, in which the first enclosure (14) is subject to a pressure higher than atmospheric pressure, and including means of heating (16) the said fluid able to raise the fluid to its boiling temperature, a second enclosure (20) pressurised at a pressure roughly equal to that of the first enclosure (14), inside which the deposition by boiling occurs, in which means of heating (24) are provided to heat at least a part of the surface (4) of the substrate (2), and in which the first enclosure (14) is connected to the second enclosure (20) to allow the second enclosure (20) to be supplied with the fluid raised roughly to its boiling temperature.
    • 一种旨在完成在基底(2)的表面(4)的至少一部分上沉积纳米尺寸颗粒的装置,包括用于容纳装有颗粒(6)的液体(8)的第一外壳(14) ),其中所述第一外壳(14)承受高于大气压的压力,并且包括加热所述流体以使所述流体升高到其沸腾温度的装置,所述第二外壳(20) 在大致等于第一外壳(14)的压力的压力下加压,在该压力下,通过沸腾发生沉积,其中提供加热装置(24)以加热基底表面(4)的至少一部分 2),并且其中第一外壳(14)连接到第二外壳(20),以允许第二外壳(20)被提供大致升高到其沸腾温度的流体。
    • 8. 发明授权
    • Method for producing a nanostructure based on interconnected nanowires, nanostructure and use as thermoelectric converter
    • 基于互连的纳米线,纳米结构和用作热电转换器的纳米结构的制造方法
    • US07868243B2
    • 2011-01-11
    • US11826293
    • 2007-07-13
    • Marc PlissonnierFrederic GaillardRaphael SalotJean-Antoine Gruss
    • Marc PlissonnierFrederic GaillardRaphael SalotJean-Antoine Gruss
    • H01L35/00H01L21/44
    • H01L35/34H01L35/32Y10S977/89Y10T428/2971
    • Method for producing a nanostructure based on interconnected nanowires, nanostructure and use as thermoelectric converter The nanostructure comprises two arrays of nanowires made from respectively n-doped and p-doped semi-conducting material. The nanowires of the first array, for example of n type, are formed for example by VLS growth. A droplet of electrically conducting material that acted as catalyst during the growth step remains on the tip of each nanowire of the first array at the end of growth. A nanowire of the second array is then formed around each nanowire of the first array by covering a layer of electrically insulating material formed around each nanowire of the first array, and the associated droplet, with a layer of p-type semi-conducting material. A droplet thus automatically connects a nanowire of the first array with a single coaxial nanowire of the second array. This type of nanostructure can be used in particular to form a thermoelectric converter.
    • 用于制备基于互连纳米线,纳米结构并用作热电转换器的纳米结构的方法纳米结构包括由分别掺杂n型掺杂和p掺杂半导体材料制成的两个纳米线阵列。 第一阵列的纳米线,例如n型,例如通过VLS生长形成。 在生长步骤中用作催化剂的导电材料液滴在生长结束时保留在第一阵列的每个纳米线的尖端上。 然后通过用一层p型半导体材料覆盖形成在第一阵列的每个纳米线周围的电绝缘材料层和相关联的液滴,形成在第一阵列的每个纳米线周围的第二阵列的纳米线。 因此,液滴自动地将第一阵列的纳米线与第二阵列的单个同轴纳米线连接。 这种类型的纳米结构可以特别用于形成热电转换器。