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    • 3. 发明申请
    • Plasma polymerization enhancement of surface of metal for use in refrigerating and air conditioning
    • 用于制冷和空调的金属表面的等离子体聚合增强
    • US20030070911A1
    • 2003-04-17
    • US10189964
    • 2002-07-03
    • KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    • Seok-Keun KohHyung Jin JungWon Kook ChoiByung Ha KangKi Hwan KimSam Chul HaCheol Hwan KimSung-Chang Choi
    • H05F003/00
    • B05D1/62C23C16/30C23C16/50C23C16/503C23C16/515C23C16/56F25B47/003F28F13/18Y10T428/31692
    • According to the present invention, there is provided a plasma polymerization surface modification of a metal for enhancing its applicability for use in refrigerating and airconditioning such as in constructing heat exchanges, by using a DC discharge plasma, compriding the steps of: (a) positioning an anode electrode which is substantially of metal to be surface-modified and a cathode electrode in a chamber, (b) maintaining a pressure in the chamber at a predetermined vacuum level, (c) blowing a reaction gas composed of an unsaturated aliphatic hydrocarbon monomer gas or flourine-containing monomer and silicon containing monomer gas at a predetermined pressure and a non-polymerixable gas at a predetermined pressure into the chamber, and (d) applying a voltage to the electrodes in order to obtain a DC discharge, whereby to obtain a plasma consisting of positive and negative ions and radicals generated from the unsaturated aliphatic hydrocarbon monomer gas and the non-plymerizable gas, and then forming a polymer with hyrdophilcity or hydrophobicity on the surface of the anode electrode by plasma deposition, and there is also provided a plasma polymerization surface modification of a metal for enhancing its applicability for use in refrigerating and air conditioning such as in constructing heat exchanges, by using an RF plasma.
    • 根据本发明,提供了一种金属的等离子体聚合表面改性,用于增强其用于制冷和空调的适用性,例如通过使用DC放电等离子体来构造热交换,其包括以下步骤:(a)定位 基本上要被表面改性的金属和在室中的阴极电极的阳极电极,(b)将腔室中的压力保持在预定的真空度,(c)吹送由不饱和脂族烃单体组成的反应气体 气体或含氟单体和预定压力的含硅单体气体和以预定压力进入室的非可聚合气体,以及(d)向电极施加电压以获得DC放电,从而获得 由正负离子组成的等离子体和由不饱和脂族烃单体气体和非可聚合气体产生的自由基,a 然后通过等离子体沉积在阳极电极的表面上形成具有亲水性或疏水性的聚合物,并且还提供了金属的等离子体聚合表面改性以增强其用于制冷和空调的适用性,例如构建热交换 ,通过使用RF等离子体。
    • 4. 发明申请
    • Fabrication method of blue light emitting ZnO thin film phosphor
    • 蓝色发光ZnO薄膜荧光体的制造方法
    • US20030052318A1
    • 2003-03-20
    • US09988603
    • 2001-11-20
    • KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    • Won Kook ChoiHyung Jin Jung
    • H01L021/00H01L029/12
    • C09K11/0811C09K11/54
    • The present invention relates to a fabrication method of blue light emitting ZnO thin film phosphor. More particularly, the invention relates to a fabrication method of blue light emitting ZnO thin film phosphor simply by heat treatment without making Al-added alloy. The present invention is characterized by loading substrate that is vapor-deposited with dopant-added ZnO thin film into a heat-treating chamber, and heat-treating it quickly under gas atmosphere to activate the dopant. According to the present invention, a thin film phosphor having new luminescence peak can be fabricated by quick-heat-treatment of zinc compound semiconductor under hydrogen atmosphere. This thin film phosphor can replace the conventional blue luminescence using alloy-type ZnO and furthermore can be utilized as blue light emitting material for flat plate display elements such as FED and PDP.
    • 本发明涉及蓝色发光型ZnO薄膜荧光体的制造方法。 更具体地说,本发明涉及简单地通过不进行Al添加合金的热处理的蓝色发光型ZnO薄膜荧光体的制造方法。 本发明的特征在于将载有掺杂剂的ZnO薄膜气相沉积的基板加载到热处理室中,并在气体气氛下快速热处理以活化掺杂剂。 根据本发明,可以通过在氢气氛下快速热处理锌化合物半导体来制造具有新的发光峰的薄膜荧光体。 该薄膜荧光体可以用合金型ZnO代替常规的蓝色发光,并且还可以用作平板显示元件如FED和PDP的蓝色发光材料。
    • 7. 发明申请
    • Plasma polymerization on surface of material
    • US20010045351A1
    • 2001-11-29
    • US09887189
    • 2001-06-22
    • KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    • Seok-Keun KohHyung Jin JungWon Kook ChoiKi Hwan KimSam Chul HaCheol Hwan KimSung-Chang Choi
    • C08F002/52H05F003/00
    • B05D1/62C23C16/30C23C16/503C23C16/509
    • According to the present invention, there is provided a method for surface processing by plasma polymerization of a surface of a metal by using a DC discharge plasma, comprising the steps of: positioning an anode electrode which is substantially of metal to be surface-processed and a cathode electrode in a chamber; maintaining a pressure in the chamber at a predetermined vacuum level; blowing an unsaturated aliphatic hydrocarbon monomer gas or a fluorine-containing monomer gas at a predetermined pressure and a non-polymerizable gas at a predetermined pressure into the chamber; and applying a voltage to the electrodes in order to obtain a DC discharge, whereby to obtain a plasma consisting of positive and negative ions and radicals generated from the unsaturated aliphatic hydrocarbon monomer gas or the fluorine containing monomer gas and the non-polymerizable gas, and then forming a polymer with hydrophilicity or hydrophobicity on the surface of the anode electrode by plasma deposition, and also provided a method for surface processing by plasma polymerization of a surface of a materials including a metal, a ceramic or a polymer by using an RF discharge plasma, comprising the steps of: positioning a passive electrode which is of the material to be surface-processed and an active electrode which is substantially of metal in a chamber; maintaining a pressure in the chamber at a predetermined vacuum level; blowing an unsaturated aliphatic hydrocarbon monomer gas or a fluorine-containing monomer gas at a predetermined pressure and a non-polymerizable gas at a predetermined pressure into the chamber; and applying a voltage to the electrodes in order to obtain an RF discharge, whereby to obtain a plasma consisting of positive and negative ions and radicals generated from the unsaturated aliphatic hydrocarbon monomer gas or the fluorine containing monomer gas and the non-polymerizable gas, and then forming a polymer with hydrophilicity or hydrophobicity on the surface of the passive electrode by plasma deposition.
    • 9. 发明申请
    • Plasma polymerization enhancement of surface of metal for use in refrigerating and air conditioning
    • 用于制冷和空调的金属表面的等离子体聚合增强
    • US20020189931A1
    • 2002-12-19
    • US10189970
    • 2002-07-03
    • KOREA INSTITUTE OF SCIENCE AND TECHNOLOGY
    • Seok-Keun KohHyung Jin JungWon Kook ChoiByung Ha KangKi Hwan KimSam Chul HaCheol Hwan KimSung-Chang Choi
    • C07C001/00
    • B05D1/62C23C16/30C23C16/50C23C16/503C23C16/515C23C16/56F25B47/003F28F13/18Y10T428/31692
    • According to the present invention, there is provided a plasma polymerization surface modification of a metal for enhancing its applicability for use in refrigerating and air conditioning such as in constructing heat exchanges, by using a DC discharge plasma, comprising the steps of: (a) positioning an anode electrode which is substantially of metal to be surface-modified and a cathode electrode in a chamber, (b) maintaining a pressure in the chamber at a predetermined vacuum level, (c) blowing a reaction gas composed of an unsaturated aliphatic hydrocarbon monomer gas or fluorine-containing monomer and silicon containing monomer gas at a predetermined pressure and a non-polymerizable gas at a predetermined pressure into the chamber, and (d) applying a voltage to the electrodes in order to obtain a DC discharge, whereby to obtain a plasma consisting of positive and negative ions and radicals generated from the unsaturated aliphatic hydrocarbon monomer gas and the non-polymerizable gas, and then forming a polymer with hydrophilicity or hydrophobicity on the surface of the anode electrode by plasma deposition, and there is also provided a plasma polymerization surface modification of a metal for enhancing its applicability for use in refrigerating and air conditioning such as in constructing heat exchanges, by using an RF plasma.
    • 根据本发明,通过使用DC放电等离子体,提供了一种金属的等离子体聚合表面改性,用于增强其在制冷和空调中的应用,例如构建热交换,其包括以下步骤:(a) 将基本上要被表面改性的金属的阳极电极和阴极电极放置在室中,(b)将室内的压力保持在预定的真空度,(c)吹送由不饱和脂族烃组成的反应气体 单体气体或含氟单体和预定压力的含硅单体气体和以预定压力进入室的非可聚合气体,以及(d)向电极施加电压以获得DC放电,从而 获得由不饱和脂肪烃单体气体和不可聚合气体产生的正离子和负离子和自由基组成的等离子体, 然后通过等离子体沉积在阳极电极的表面上形成具有亲水性或疏水性的聚合物,并且还提供金属的等离子体聚合表面改性以增强其用于制冷和空调的适用性,例如构建热交换 ,通过使用RF等离子体。