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    • 2. 发明授权
    • Method for producing metal nanoparticles, ink composition using the same and method for producing the same
    • 金属纳米粒子的制造方法,使用其的油墨组合物及其制造方法
    • US08728350B2
    • 2014-05-20
    • US12926907
    • 2010-12-16
    • Sung Koo KangDong Hoon KimJoon Rak Choi
    • Sung Koo KangDong Hoon KimJoon Rak Choi
    • H01B1/00
    • C09D11/52C08K3/08C08K9/04C09D11/322C09D11/36
    • There are provided a method for producing metal nanoparticles including preparing a first solution including a metal precursor, an amine, and a non-aqueous solvent; producing metal nanoparticles capped with amine by heating, agitating, and reducing the first solution; preparing a second solution by washing a non-reactive amine among the produced metal nanoparticles and dispersing the metal nanoparticles in the non-aqueous solvent; and partially capping an acid on the metal nanoparticles dispersed by adding the acid to the second solution and heating and agitating it, an ink composition using the same, and a method for producing the same. The exemplary embodiments of the present invention can provide a method for producing metal nanoparticles having surface stability, excellent adhesion, an effect of reducing cracks by modifying the substituents of metal nanoparticles, an ink composition using the same, and a method for producing the same.
    • 提供了一种制备金属纳米颗粒的方法,包括制备包含金属前体,胺和非水溶剂的第一溶液; 通过加热,搅拌和还原第一溶液来生产用胺封端的金属纳米颗粒; 通过在所制备的金属纳米颗粒中洗涤非反应性胺并将金属纳米颗粒分散在非水溶剂中来制备第二溶液; 并且通过向第二溶液中加入酸并加热和搅拌而分散的金属纳米颗粒上的酸部分地覆盖,使用该酸的油墨组合物及其制备方法。 本发明的示例性实施方案可以提供具有表面稳定性,优异的粘合性,通过改变金属纳米颗粒的取代基来减少裂纹的效果的金属纳米颗粒的制备方法,使用其的油墨组合物及其制备方法。
    • 3. 发明申请
    • Method for producing metal nanoparticles, ink composition using the same and method for producing the same
    • 金属纳米粒子的制造方法,使用其的油墨组合物及其制造方法
    • US20110232527A1
    • 2011-09-29
    • US12926907
    • 2010-12-16
    • Sung Koo KangDong Hoon KimJoon Rak Choi
    • Sung Koo KangDong Hoon KimJoon Rak Choi
    • C09D11/06C11C3/00
    • C09D11/52C08K3/08C08K9/04C09D11/322C09D11/36
    • There are provided a method for producing metal nanoparticles including preparing a first solution including a metal precursor, an amine, and a non-aqueous solvent; producing metal nanoparticles capped with amine by heating, agitating, and reducing the first solution; preparing a second solution by washing a non-reactive amine among the produced metal nanoparticles and dispersing the metal nanoparticles in the non-aqueous solvent; and partially capping an acid on the metal nanoparticles dispersed by adding the acid to the second solution and heating and agitating it, an ink composition using the same, and a method for producing the same.The exemplary embodiments of the present invention can provide a method for producing metal nanoparticles having surface stability, excellent adhesion, an effect of reducing cracks by modifying the substituents of metal nanoparticles, an ink composition using the same, and a method for producing the same.
    • 提供了一种制备金属纳米颗粒的方法,包括制备包含金属前体,胺和非水溶剂的第一溶液; 通过加热,搅拌和还原第一溶液来生产用胺封端的金属纳米颗粒; 通过在所制备的金属纳米颗粒中洗涤非反应性胺并将金属纳米颗粒分散在非水溶剂中来制备第二溶液; 并且通过向第二溶液中加入酸并加热和搅拌而分散的金属纳米颗粒上的酸部分地覆盖,使用该酸的油墨组合物及其制备方法。 本发明的示例性实施方案可以提供具有表面稳定性,优异的粘合性,通过改变金属纳米颗粒的取代基来减少裂纹的效果的金属纳米颗粒的制备方法,使用其的油墨组合物及其制备方法。
    • 9. 发明申请
    • Semiconductor device
    • 半导体器件
    • US20070152278A1
    • 2007-07-05
    • US11481200
    • 2006-07-03
    • Dong Hoon Kim
    • Dong Hoon Kim
    • H01L29/76
    • H01L27/092H01L27/0207
    • A semiconductor device features connecting gate patterns of all transistors to a N+ or +P junction by the first connected wiring layer to prevent degradation of characteristics of the semiconductor device which results from plasma damages during a process. In order to connect a junction to a gate layer weak to plasma damages, the gate layer is connected to the N+ or P+ junction when a first wiring layer after a transistor is formed. As a result, when the gate layer is charged up by plasma damages, the gate layer is discharged by the junction or provided to receive (−) ions or electrons so that a gate oxide is not affected by plasma damages.
    • 半导体器件具有通过第一连接布线层将所有晶体管的栅极图案连接到N +或+ P结,以防止在工艺期间由等离子体损坏导致的半导体器件的特性劣化。 为了将结点连接到弱到等离子体损伤的栅极层,当形成晶体管之后的第一布线层时,栅极层连接到N +或P +结。 结果,当栅极层被等离子体损伤充电时,栅极层通过结点放电或者被提供以接收( - )离子或电子,使得栅极氧化物不受等离子体损伤的影响。
    • 10. 发明授权
    • Membraneless piezoelectric/electrostrictive microactuator and manufacturing method thereof
    • 无膜压电/电致伸缩微致动器及其制造方法
    • US06584708B2
    • 2003-07-01
    • US09845484
    • 2001-04-30
    • Sang Kyeong YunSung June ParkDong Hoon Kim
    • Sang Kyeong YunSung June ParkDong Hoon Kim
    • B41J2045
    • H01L41/0973H01L41/313H01L41/332
    • The present invention relates to a membraneless piezoelectric/electrostrictive microactuator comprising: a chamber; a chamber plate in which the chamber is formed; a lower electrode formed on the chamber plate and covering the chamber; a bonding layer formed between the chamber plate and the lower electrode and bonding the chamber plate and the lower electrode; a piezoelectric/electrostrictive film formed on the lower electrode and vibrating when electrified; and an upper electrode formed on the piezoelectric/electrostrictive film, and a manufacturing method thereof, which is membraneless so that structure is simple so that manufacturing method is simple and production cost is reduced to effect eventually the productivity improvement, so also which produces effect of reliability and yield ratio improvement as it is membraneless so that there occur no deformation, crack or void at the bonding part of vibration plate and piezoelectric/electrostrictive film.
    • 无膜压电/电致伸缩微致动器技术领域本发明涉及一种无膜压电/电致伸缩微致动器,包括:腔室; 形成腔室的室板; 形成在所述室板上并覆盖所述室的下电极; 形成在所述室板和所述下电极之间并且接合所述室板和所述下电极的接合层; 形成在下电极上并在通电时振动的压电/电致伸缩膜; 以及形成在压电/电致伸缩膜上的上电极及其制造方法,其结构简单,制造方法简单,生产成本降低,生产效率提高,因此也是无膜的,因此也产生效果 可靠性和屈服比提高,因为它是无膜的,使得在振动板和压电/电致伸缩膜的接合部分处不发生变形,裂纹或空隙。