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公开(公告)号:US20150299758A1
公开(公告)日:2015-10-22
申请号:US14355731
申请日:2012-11-08
Applicant: Kanagawa Academy of Science and Technology
Inventor: Kenji YASUDA , Hyonchol KIM , Hideyuki TERAZONO , Akihiro HATTORI
CPC classification number: C12Q1/24 , B05D1/30 , B22F1/0018 , B81C99/0085 , B82Y5/00 , B82Y15/00 , B82Y25/00 , B82Y40/00 , C22C2202/02 , G01N33/5434 , H01F1/0054 , H01F1/01 , H01F1/346
Abstract: The present invention provides a method for producing a microscopic object comprising locating a microscopic structure, formed of an organic substance, to be used as a mold on a substrate, depositing an intended element on a surface of the organic structure by a vacuum vapor deposition method or the like, and then decomposing and thus removing the organic structure as the mold by an ultraviolet-ozone process or the like to obtain the microscopic structure formed of only an intended element.
Abstract translation: 本发明提供一种生产微观物体的方法,包括将由有机物形成的微观结构定位在基底上用作模具,通过真空气相沉积法将有意的元素沉积在有机结构的表面上 然后通过紫外线 - 臭氧处理等分解并除去作为模具的有机结构,以获得仅由所需元素形成的微观结构。
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2.
公开(公告)号:US20140248690A1
公开(公告)日:2014-09-04
申请号:US14273673
申请日:2014-05-09
Applicant: KANAGAWA ACADEMY OF SCIENCE AND TECHNOLOGY , NATIONAL UNIVERSITY CORPORATION TOKYO MEDICAL AND DENTAL UNIVERSITY
Inventor: Hiroyuki Takei , Hideyuki TERAZONO , Kenji YASUDA
CPC classification number: B01L7/52 , B01L3/50851 , B01L3/50855 , B01L2300/185 , B01L2400/0622 , B01L2400/0633 , B01L2400/0644 , C12Q1/686 , F28D7/0008 , F28D15/00 , F28D2021/0077 , F28F27/02 , F28F2280/02
Abstract: One embodiment provides a liquid reflux reaction control device comprising: a reaction vessel having one or a plurality of wells configured to accommodate a sample; a heat exchange vessel provided in contact with the reaction vessel so as to conduct heat to the reaction vessel, and comprising an inlet and an outlet respectively for introducing and draining a liquid of a predetermined temperature; a plurality of liquid reservoir tanks provided with a temperature-controllable heat source for maintaining liquids of predetermined temperatures; a tubular flow channel that connects the inlet and the outlet of the heat exchange vessel with the liquid reservoir tanks; a pump disposed on the tubular flow channel, and configured to circulate the liquid between the heat exchange vessel and the liquid reservoir tank; and a switching valve disposed on the tubular flow channel, and configured to control the flow of the circulating liquid.
Abstract translation: 一个实施方案提供了一种液体回流反应控制装置,包括:具有配置成容纳样品的一个或多个阱的反应容器; 设置为与反应容器接触以便将热量传导到反应容器的热交换容器,并且包括分别用于引入和排出预定温度的液体的入口和出口; 设置有用于保持预定温度的液体的温度可控热源的多个储液箱; 连接热交换容器的入口和出口与液体储存罐的管状流动通道; 泵,其设置在所述管状流动通道上,并且构造成使所述液体在所述热交换容器和所述储液箱之间循环; 以及设置在所述管状流路上的切换阀,其构成为控制所述循环液的流动。
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