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    • 6. 发明申请
    • Method for Activating Catalyst Using Photothermal Nanomaterials
    • 使用光热纳米材料活化催化剂的方法
    • US20130210115A1
    • 2013-08-15
    • US13817305
    • 2011-08-18
    • Min Gon KimTaihua LiYong Beom Shin
    • Min Gon KimTaihua LiYong Beom Shin
    • C12N9/96B01J27/02
    • C12N9/96B01J21/185B01J27/02B01J31/003B01J35/0013B01J35/004B01J37/04B82Y30/00C11C3/04C11C3/10C12N11/14Y10S977/742
    • Disclosed is a method for activating a catalyst using the photothermal effects of photothermal nanomaterials, and more particularly to a method of activating a catalyst at a temperature, at which the catalyst has low or no activity, by irradiating a catalyst-photothermal nanomaterial composite with light. The method can activate the catalyst by increasing only the temperature around the nanomaterials without substantially changing the temperature of the reaction medium. A catalyst that generally has high activity at room temperature can be activated even at low temperature. Catalysts having high activity only under mild conditions are immobilized on photothermal nanomaterials so that they have activity even under low temperature and extreme conditions. The invention is useful when a catalyst substrate unstable at room temperature is used or a catalytic product unstable at room temperature is produced.
    • 公开了使用光热纳米材料的光热效应来活化催化剂的方法,更具体地说,涉及在催化剂 - 光热纳米材料复合物与光照射下在催化剂活性低或无活性的温度下活化催化剂的方法 。 该方法可以通过仅增加纳米材料周围的温度来激活催化剂,而基本上不改变反应介质的温度。 通常在室温下通常具有高活性的催化剂即使在低温也可以被活化。 仅在温和条件下具有高活性的催化剂固定在光热纳米材料上,使得即使在低温和极端条件下它们也具有活性。 当使用在室温下不稳定的催化剂基材或在室温下产生不稳定的催化剂时,本发明是有用的。
    • 7. 发明申请
    • METHOD OF RAPIDLY DETECTING MICROORGANISMS USING NANOPARTICLES
    • 使用纳米颗粒快速检测微生物的方法
    • US20130065220A1
    • 2013-03-14
    • US13511574
    • 2010-11-24
    • Min Gon KimYong Beom ShinYoon Joo Sung
    • Min Gon KimYong Beom ShinYoon Joo Sung
    • G01N33/569C12M1/34G01N21/25C12Q1/70B82Y15/00
    • G01N33/569B82Y15/00G01N33/54346
    • The present invention relates to a method of rapidly detecting microorganisms using nanoparticles, and more particularly to a method and device of rapidly detecting microorganisms by adding, to the microorganisms to be detected, nanoparticles having immobilized thereon an antibody that binds specifically to the microorganisms to be detected, subjecting the mixture to an immune reaction to form a reaction solution, passing the reaction solution through a microorganism-concentrating film to concentrate the microorganisms, capturing microorganisms, which was immune-reacted with the antibody-immobilized nanoparticles, by a microorganism-capturing filtration membrane, and determining the presence and concentration of the microorganisms.The present invention detects microorganisms using nanoparticles having immobilized thereon an antibody that binds specifically to the microorganisms to be detected, so that the presence and concentration of the microorganisms can be determined in a more effective and simpler manner than a conventional detection method, and the inventive method is effective in detecting a small amount of microorganisms owing to high sensitivity.
    • 本发明涉及使用纳米颗粒快速检测微生物的方法,更具体地说,涉及通过向被检测微生物添加特异性地与微生物结合的抗体的纳米颗粒来快速检测微生物的方法和装置。 检测到,使混合物进行免疫反应以形成反应溶液,使反应溶液通过微生物浓缩膜以浓缩微生物,通过微生物捕获捕获与抗体固定的纳米颗粒免疫反应的微生物 过滤膜,并确定微生物的存在和浓度。 本发明使用其上固定有特异性地与待检测微生物结合的抗体的纳米颗粒来检测微生物,从而可以以比现有的检测方法更有效和更简单的方式确定微生物的存在和浓度。 方法由于高灵敏度而有效地检测少量的微生物。