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    • 2. 发明专利
    • Conductive oxide mixture
    • 导电氧化物混合物
    • JP2003286010A
    • 2003-10-07
    • JP2002088252
    • 2002-03-27
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • TSUNODA TATSUROKOBAYASHI KIYOSHI
    • C04B35/50C01B13/02C01B13/18C01G3/00C01G9/00H01B1/08
    • PROBLEM TO BE SOLVED: To provide a conductive oxide mixture stably existing without causing embrittlement even if the transfer of oxygen is carried out, having the oxygen ion conductivity and the electron conductivity optionally controlled by the combination of oxides having different physical properties from each other or the change of composition ratio of the oxides to each other to be effectively used as a material giving a desired oxide ion permeation rate or a reactive material and having excellent sintering property, moldability, workability and the like. SOLUTION: The conductive oxide mixture formed from the combination of an oxide having oxide ion conductivity and an oxide having electron conductivity which exists as a mixed structural phase being in a thermodynamic equilibrium state is provided. COPYRIGHT: (C)2004,JPO
    • 要解决的问题:为了提供即使进行氧的转移也能稳定存在而不引起脆化的导电氧化物混合物,具有氧离子传导性和电子传导性,任选地通过具有不同物理性质的氧化物的组合来控制 彼此之间或氧化物的组成比的变化相互有效地用作具有所需氧化物离子渗透速率的材料或反应性材料,并且具有优异的烧结性,成型性,可加工性等。 解决方案:提供由具有氧化物离子传导性的氧化物和具有作为混合结构相存在的具有电子传导性的氧化物的组合形成的导电氧化物混合物处于热力学平衡状态。 版权所有(C)2004,JPO
    • 3. 发明专利
    • Dna synthetase-silica-based nanoporous material composite, method of producing the same, and use thereof
    • DNA合成二氧化硅基纳米材料复合材料,其生产方法及其用途
    • JP2014103924A
    • 2014-06-09
    • JP2012260391
    • 2012-11-28
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所Research Organization Of Information & Systems大学共同利用機関法人情報・システム研究機構
    • MATSUURA SHUNICHICHIBA MANAMITSUNODA TATSUROBABA TOMOYA
    • C12N11/14C12N15/09
    • PROBLEM TO BE SOLVED: To provide a DNA synthetase-silica-based nanoporous material composite, a method of producing the same, and a use thereof.SOLUTION: There is provided a DNA synthetase-silica-based nanoporous material composite which is an enzyme-containing composite having a DNA synthetase with an ability to synthesize DNA in silica pores of a silica-based nanoporous material, in which an enzyme is stably fixed in the silica pores of the silica-based nanoporous material before and after enzyme reaction, and which is in a composite state in which the enzyme-containing composite exhibits interaction with a nucleic acid (DNA) which is a reaction substrate and can stably exhibit enzyme activity. There are provided a DNA synthetase-containing high-durability member which consists of the DNA synthetase-silica-based nanoporous material composite and which can stably adsorb, fix, and hold the enzyme on the silica pores of the silica-based nanoporous material and can stably exhibit the ability to synthesize DNA even when it is repeatedly used for DNA synthesis reaction, and a method of amplifying DNA from an infinitesimal sample by the DNA synthetase-silica-based nanoporous material composite.
    • 要解决的问题:提供DNA合成酶 - 二氧化硅基纳米多孔材料复合物及其制备方法及其用途。提供了一种DNA合成酶 - 二氧化硅基纳米多孔材料复合材料, 含有能够在二氧化硅系纳米多孔材料的二氧化硅孔中合成DNA的DNA合成酶的复合物,其中酶稳定地固定在二氧化硅系纳米多孔材料的二氧化硅孔内,在酶反应前后, 处于复合状态,其中含酶复合物与作为反应底物的核酸(DNA)显示相互作用并且可以稳定地显示酶活性。 提供了含有DNA合成酶的高耐久性构件,其由DNA合成酶 - 二氧化硅基纳米多孔材料复合材料组成,可以稳定地吸附,固定并保持酶在二氧化硅基纳米多孔材料的二氧化硅孔上,并且可以 即使在重复使用DNA合成反应时也稳定地表现出合成DNA的能力,以及通过DNA合成酶 - 二氧化硅基纳米多孔材料复合体从无限小样品中扩增DNA的方法。
    • 4. 发明专利
    • α-AMYLASE-FSM BASED MESO PORE POROUS COMPLEX
    • 基于α-AMYLASE-FSM的MESO PORE POROUS COMPLEX
    • JP2009112242A
    • 2009-05-28
    • JP2007288426
    • 2007-11-06
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • TSUNODA TATSUROHISAMATSU KANAKOTOGASHI HIDEAKINARA TAKAYUKISEKIKAWA CHISATOKAWAI AKIKOSHIOMI TORUMIZUKAMI FUJIOSAKAGUCHI KENGO
    • C12N11/14
    • PROBLEM TO BE SOLVED: To provide an amylase-FSM based meso pore porous complex which contributes to realization of efficient starch hydrolysis of various starch raw materials, and facilitates recovery, recycling and continuous utilization of the enzyme. SOLUTION: Provided are the amylase-FSM based meso pore porous complex having a structure in which the amylase is immobilized in the FSM based meso pore porous, and the immobilized amylase has an enzymatic activity to catalyze the hydrolysis of starch; a method for producing the amylase-FSM based meso pore porous complex, comprising adsorption-holding and immobilizing the amylase to the FSM based meso pore porous; and a method for producing the hydrolyzate of the starch with the complex. According to the present invention, further provided are the amylase-FSM based meso pore porous complex in which the enzyme is immobilized in a highly integrated state, the method for producing the same, and the process for hydrolyzing the starch with the complex. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种淀粉酶-FMM的中孔多孔复合物,其有助于实现各种淀粉原料的有效淀粉水解,并促进酶的回收,再循环和连续利用。 解决方案:提供了具有淀粉酶固定在基于FSM的中孔多孔的结构的基于淀粉酶-FMM的中孔多孔复合物,并且固定的淀粉酶具有催化淀粉水解的酶活性; 一种生产淀粉酶-FSM的中孔多孔复合物的方法,包括将淀粉酶吸附保持并固定在基于FSM的中孔多孔中; 以及用复合物生产淀粉的水解产物的方法。 根据本发明,进一步提供了以高度一体化的状态固定酶的淀粉酶-FMM的中孔多孔复合物,其制备方法以及用复合物水解淀粉的方法。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Silica-based mesoporous material-heteroprotein complex and method for producing the same
    • 二氧化硅基异种材料复合物及其制备方法
    • JP2008143892A
    • 2008-06-26
    • JP2007297308
    • 2007-11-15
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • MATSUURA SHUNICHIMIZUKAMI FUJIOITO TETSUJIISHII AKIRATSUNODA TATSUROHANAOKA TAKAMASASAKAGUCHI KENGO
    • C07K17/14C01B37/02C07K14/435C12N11/14G01N21/78G01N33/543
    • PROBLEM TO BE SOLVED: To provide a silica-based mesoporous material-heteroprotein inclusion complex and to provide a method for producing the complex and to provide application of the complex.
      SOLUTION: The silica-based mesoporous body-heteroprotein complex has at least two kinds of heteroproteins different in properties in pore interior of a silica-based mesoporous body (FSM: folded-sheet mesoporous material). The complex is characterized in that the proteins are absorbed in the pores of the FSM and stably fixed in a dispersed state and two kinds of heteroproteins are kept in a close state so as to exhibit mutual action between the heteroproteins and the proteins are absorbed in pores of the FSM as proteins accumulated in high density. The method for producing the complex is also provided. A functional member is composed of the complex and the member is obtained by stably absorbing a heteroprotein having functionality into pores of FSM in a disperse state and stably retaining the activity. According to the present invention, new FSM-heteroprotein complex in which activity of heteroprotein having functionality such as fluorescent property or luminescence is stably retained, a method for producing the complex and application as the functional member can also be provided.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供二氧化硅基介孔材料 - 异蛋白包合物并提供复合物的制备方法并提供复合物的应用。 解决方案:二氧化硅基介孔体 - 异型蛋白复合物在二氧化硅基介孔体(FSM:折叠片介孔材料)的孔内具有至少两种不同性质的异质蛋白。 该复合物的特征在于蛋白质被吸收在FSM的孔中,并以分散的状态稳定地固定,并且两种异蛋白保持在接近状态,以便在杂蛋白之间发挥相互作用,并且蛋白质被吸收在孔中 的FSM作为高密度积聚的蛋白质。 还提供了生产复合物的方法。 功能性构件由络合物组成,通过在分散状态下稳定地吸收具有官能团的功能性的蛋白质的孔而获得,并稳定地保持活性。 根据本发明,还可以提供其中稳定保留具有诸如荧光性质或发光等功能的杂蛋白的活性的新的FSM-异型蛋白复合物,制备复合物的方法和用作功能性构件。 版权所有(C)2008,JPO&INPIT
    • 7. 发明专利
    • Precursor composition for mixture conductive oxide
    • 混合导电氧化物的前驱体组合物
    • JP2003300708A
    • 2003-10-21
    • JP2002100987
    • 2002-04-03
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • TSUNODA TATSUROKOBAYASHI KIYOSHI
    • B01D53/22B01D71/02C01B13/32C01G29/00H01B1/06
    • PROBLEM TO BE SOLVED: To provide a precursor composition from which a uniform and dense mixture conductive oxide with excellent low temperature sintering property, molding property, processing property, or the like, is obtained and in which a composition of an ionic conductive oxide and an electron conductive metal in the mixture conductive oxide can be properly, easily and accurately controlled, and to provide the conductive oxide having a mixture structural phase obtained from the above composition.
      SOLUTION: The precursor composition for the mixture conductive oxide comprises a metal salt having oxygen ionic conductivity, a noble metal salt having electron conductivity, a metal chelating agent and a solidifying agent. A mixture conductive oxide sintered body is obtained from the above precursor composition and comprises the combination of an oxide having oxygen ionic conductivity and a metal having electron conductivity, in which the oxide having the oxygen ionic conductivity and the metal having the electron conductivity are present as the mixture structural phase in a thermodynamic equilibrium state. The sintered body is useful as an oxygen permeation material or oxygen enriched material.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种前体组合物,其中获得具有优异的低温烧结性能,成型性能,加工性能等的均匀致密混合物导电氧化物,其中离子导电 氧化物和导电性氧化物中的电子传导性金属可以适当,容易且准确地控制,并提供具有由上述组成获得的混合结构相的导电氧化物。 解决方案:用于混合物导电氧化物的前体组合物包括具有氧离子导电性的金属盐,具有电子传导性的贵金属盐,金属螯合剂和固化剂。 由上述前体组合物获得混合导电氧化物烧结体,并且包括具有氧离子传导性的氧化物和具有电子传导性的金属的组合,其中具有氧离子导电性的氧化物和具有电子传导性的金属以 混合结构相处于热力学平衡状态。 烧结体可用作氧气渗透材料或富氧材料。 版权所有(C)2004,JPO
    • 8. 发明专利
    • Hydrolase complex of silica-based meso porous body-starch
    • 基于二氧化硅的MESO多孔体系的水解复合物
    • JP2009153448A
    • 2009-07-16
    • JP2007335229
    • 2007-12-26
    • National Institute Of Advanced Industrial & Technology独立行政法人産業技術総合研究所
    • TSUNODA TATSUROTOGASHI HIDEAKISEKIKAWA CHISATONARA TAKAYUKIHISAMATSU KANAKOSHIOMI TORUKAWAI AKIKOMIZUKAMI FUJIOSAKAGUCHI KENGO
    • C12N11/14C12P19/14
    • PROBLEM TO BE SOLVED: To provide a hydrolase complex of silica-based meso porous body-starch, which contributes to the realization of efficient starch hydrolysis for various starch materials, and enables the recovery, recycling and continuous use of the enzyme.
      SOLUTION: Provided is the hydrolase complex of silica-based meso porous body-starch, which is the complex of the silica-based meso porous body with the enzyme for hydrolyzing the starch, characterized in that the enzyme immobilized on the silica-based meso porous body has activity for catalyzing the hydrolysis of starch. Provided is a method for producing the hydrolase complex of silica-based meso porous body-starch, characterized by mixing the silica-based meso porous body with a solution containing the hydrolase to stably adsorb, hold and immobilize the hydrolase on the silica-based meso porous body and in the fine pores of the silica-based meso porous body. Further, provided is a method for producing a starch hydrolysis product, characterized by hydrolyzing starch with the hydrolase complex of silica-based meso porous body-starch.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供二氧化硅基中孔多孔体淀粉的水解酶复合物,其有助于实现各种淀粉材料的有效淀粉水解,并且能够回收,再循环和连续使用酶。 解决方案:提供二氧化硅基的内消旋多孔体 - 淀粉的水解酶复合物,其是二氧化硅基的内消旋多孔体与用于水解淀粉的酶的复合物,其特征在于固定在二氧化硅 - 基于meso多孔体具有催化淀粉水解的活性。 本发明提供一种二氧化硅系内消旋多孔体淀粉的水解酶配合物的制造方法,其特征在于,将二氧化硅系中孔多孔体与含有水解酶的溶液混合,使水解酶稳定地吸附, 多孔体和二氧化硅基中孔多孔体的细孔内。 此外,提供一种生产淀粉水解产物的方法,其特征在于用二氧化硅基的内消旋多孔体淀粉的水解酶复合物水解淀粉。 版权所有(C)2009,JPO&INPIT