序号 专利名 申请号 申请日 公开(公告)号 公开(公告)日 发明人
101 More improved process for the preparation of transition metal hydride - organic, including the aryl or alkyl as a hydrogen storage material JP2009185465 2009-08-10 JP5250503B2 2013-07-31 ジョンシク キム; ドンオク キム; ヘボク ユン; ジソン パク; ヒョジン チョン; ガイリョン アン; ドンウク キム; ジソン イム; ムンヒュン チャ
102 Gold complex JP2012555480 2011-03-02 JP2013521268A 2013-06-10 ピー ノーラン スティーブン
Z−Au−OH形状の酸化金(I)錯体と、Z−Au−(μOH)−Au−Z形状の二金錯体(ここで、基Zは2電子供与体である)とを提供する。 基Zは、カルベン、例えば窒素含有複素環式カルベン(NHC)、ホスフィン又はホスフェイトとし得る。 錯体は、例えばニトリルの水和、エニンの骨格転位、エニンのアルコキシ環化、アルキン水和、マイヤー・シュスター反応、アリル性アセテートの3,3'転位、プロパギル性アセテートの環化、ベックマン転位及びヒドロアミノ化のような反応における触媒として用いることができる。 錯体は医薬、例えば癌の治療に用いることができる。
103 Organic silver complex compounds, a method of producing this and the thin film forming method using the same JP2007554024 2006-02-07 JP5001860B2 2012-08-15 ソンヨン ウム; ミョンソン コン; ヨンクヮン ソ; ヒュンナム チョ; クヮンチュン チョン; ドンフン ナム; ジョンビン パク; イスプ ハン
The present invention relates to a novel organic silver complex and its preparation method by reacting a silver compound with an ammonium carbamate compound or an ammonium carbonate compound.
104 Catalytic depolymerization of polymer containing electrophilic linkage using nucleophilic reagent JP2010023779 2010-02-05 JP2010159418A 2010-07-22 HEDRICK JAMES L; KILICKIRAN PINAR; NYCE GREGORY W; WAYMOUTH ROBERT M
<P>PROBLEM TO BE SOLVED: To provide an improved method for carrying out depolymerization of a polymer. <P>SOLUTION: The method is provided for carrying out depolymerization of the polymer containing an electrophilic linkage in the presence of a catalyst and a nucleophilic reagent, wherein production of undesirable byproducts resulting from polymer degradation is minimized. The reaction can be carried out at a temperature of 80°C or lower, and generally involves the use of an organic, nonmetallic catalyst, thereby ensuring that the depolymerization product(s) are substantially free of metal contaminants. In an exemplary depolymerization method, the catalyst is a carbene compound such as an N-heterocyclic carbene, or is a precursor to a carbene compound. The method provides an important alternative to current recycling techniques such as those used in the degradation of polyesters, polyamides, and the like. <P>COPYRIGHT: (C)2010,JPO&INPIT
105 Catalyst depolymerization using a nucleophilic reagent polymer containing electrophilic linking group (polymer) JP2004565712 2003-12-23 JP4478581B2 2010-06-09 ウェイマウス、ロバート、エム; キリッキラン、ピナー; ニース、グレゴリ、ダブリュ; ヘドリック、ジェームス、エル
A method is provided for carrying out depolymerization of a polymer containing electrophilic linkages in the presence of a catalyst and a nucleophilic reagent, wherein production of undesirable byproducts resulting from polymer degradation is minimized. The reaction can be carried out at a temperature of 80° C. or less, and generally involves the use of an organic, nonmetallic catalyst, thereby ensuring that the depolymerization product(s) are substantially free of metal contaminants. In an exemplary depolymerization method, the catalyst is a carbene compound such as an N-heterocyclic carbene, or is a precursor to a carbene compound. The method provides an important alternative to current recycling techniques such as those used in the degradation of polyesters, polyamides, and the like.
106 Ethynyl group substituted fused heterocyclic compound heavy metal complex, to a process for the preparation thereof, the synthetic intermediates and their preparation as well as the organic electroluminescent element JP2006513046 2005-05-12 JP4470940B2 2010-06-02 博 佐藤; 貴文 城野; 真治 安田; 貴文 岩佐; 康裕 田中; 利一 町田; 謙二 福永; 整 藤村
107 Metal compounds for use as an initiator JP2009538662 2007-10-18 JP2010511083A 2010-04-08 ウルリケ・シュミット−フライターク; ウルリッヒ・アルノルト; エミリー・バリオ; フェリペ・ウォルフ・ファブリス; フォルカー・アルトシュテット; マルセル・ロート; マンフレート・デーリング; ヤン・ザントラー
本発明は、一般式:{[M(L) a ]X b } nで示される開始剤に関する。 これらの開始剤は、好ましくは対イオンとして(SbF 6 - )を有し、対応する金属SbF 6 -塩と対応するリガンド(L)との錯化反応によって得られる。 さらに本発明は、該開始剤を含有し、特に、非熱的および/または熱的に硬化させうる調製物およびエポキシ樹脂系に関する。
108 置換フェニルエチニル金−含窒素へテロ環カルベン錯体 JP2008517899 2007-05-25 JPWO2007139001A1 2009-10-08 藤村 整; 整 藤村; 福永 謙二; 謙二 福永; 貴志 本間; 利一 町田
本発明は、一般式(1)又は(2)式中、Lは、含窒素へテロ環カルベン配位子を示し、Xは、アルキル基、シクロアルキル基、アリール基、アラルキル基、ヘテロ環基、アルコキシ基、アリールオキシ基、アルキルメルカプト基、アリールメルカプト基又は置換アミノ基を示す;なお、Xの炭素原子上のひとつ又は複数の素原子が、独立して、ハロゲン原子、アルキル基、シクロアルキル基、アルケニル基、アリール基、アラルキル基、アルコキシ基、アリールオキシ基、アルキルメルカプト基、アリールメルカプト基又は置換アミノ基で置換されていても良い、で示される置換フェニルエチニル金−含窒素へテロ環カルベン錯体に関する。
109 Polymer compound and element given by using the same JP2005374248 2005-12-27 JP2006219663A 2006-08-24 SHIRASAWA NOBUHIKO; AKINO YOSHIHIKO; NAKATANI TOMOYA
<P>PROBLEM TO BE SOLVED: To provide a polymer compound having a structure of a conjugated polymer and a structure of a metal complex in an identical molecule and capable of giving a light emitting element having such excellent practicability as to have high efficiency and to be driven at a low voltage, when used as the light emitting element. <P>SOLUTION: This polymer compound has the structure of the conjugated polymer (A) and the structure of the metal complex (B) in the identical molecule, wherein the metal complex (B) has one or more tridentate ligands and an atomic number of a central metal thereof is not less than 21. The element has a layer containing the polymer compound between electrodes comprising a positive electrode and a negative electrode. <P>COPYRIGHT: (C)2006,JPO&NCIPI
110 Catalyst depolymerization using a nucleophilic reagent polymer containing electrophilic linking group (polymer) JP2004565712 2003-12-23 JP2006512460A 2006-04-13 ウェイマウス、ロバート、エム; キリッキラン、ピナー; ニース、グレゴリ、ダブリュ; ヘドリック、ジェームス、エル
A method is provided for carrying out depolymerization of a polymer containing electrophilic linkages in the presence of a catalyst and a nucleophilic reagent, wherein production of undesirable byproducts resulting from polymer degradation is minimized. The reaction can be carried out at a temperature of 80° C. or less, and generally involves the use of an organic, nonmetallic catalyst, thereby ensuring that the depolymerization product(s) are substantially free of metal contaminants. In an exemplary depolymerization method, the catalyst is a carbene compound such as an N-heterocyclic carbene, or is a precursor to a carbene compound. The method provides an important alternative to current recycling techniques such as those used in the degradation of polyesters, polyamides, and the like.
111 Purification method of the organic metal compound or heteroatom compounds according hydrogenated getter alloy JP2001576967 2001-04-13 JP2003531151A 2003-10-21 スッチ,マルコ; ベルガーニ,ジョルジオ
(57)【要約】 酸素及びから、並びに水及び酸素と純化しようとする有機金属化合物又はヘテロ原子化合物との反応によってもたらされる化合物から、有機金属化合物又はヘテロ原子化合物を純化する方法。 この方法は、液体状態、又は純粋な蒸気若しくはキャリアガス中の蒸気の状態の純化する有機金属化合物又はヘテロ原子化合物を、水素化されたゲッター合金、及び随意に多孔質支持体上のパラジウム、並びにゼオライトに支持された鉄及びマンガンの混合物から選択される1又は複数の気体吸収剤と接触させる操作を含む。
112 Organometallic compound for forming metal pattern and method for forming metal pattern using the same JP2002265556 2002-09-11 JP2003183257A 2003-07-03 JUNG MIN CHUL; HWANG SOON TAIK; BYUN YOUNG HUN; HWANG EUK CHE
PROBLEM TO BE SOLVED: To provide a new organometallic compound and a method for forming a metal pattern using the compound. SOLUTION: This organometallic compound for forming the metal pattern is represented by chemical formula (1) L'-M-L (1) (wherein, M is one kind of transition metal selected from the group consisting of Ag, Au, Cu, Pd, Ni and Pt: L is an imidazolylidene compound having a specific structure; and L' is an imidazolylidene compound having a specific structure or a β-diketonate having a specific structure). Since L', M and L are present on the nearly same plane, the compound is capable of reducing the bulkiness of an organic ligand which is the largest cause of metal film shrinkage. Furthermore, L' and L have characteristics of readily degrading and eliminating the ligand with light. Thereby, cracking can be suppressed when the metal pattern is formed. COPYRIGHT: (C)2003,JPO
113 Method of manufacturing a pyrrole derivative JP6490489 1989-03-16 JP2791488B2 1998-08-27 BURUUNO SHAUPU; HANSUURUEJI KENEERU; PEETAA ATSUKAAMAN
114 Contact alkylation processes JP22244895 1995-07-28 JP2775239B2 1998-07-16 ROBAATO CHAARUZU MORISON; RANDEI UINFURETSUDO HOORU; BOBU TOROI DOOBAA; KONRADO UIRIAMU KAMINSUKII; JON FURANSHISU ENJERU
115 Contact alkylation processes JP23254492 1992-07-17 JP2551901B2 1996-11-06 ROBAATO CHAARUZU MORISON; RANDEI UINFURETSUDO HOORU; BOBU TOROI DOOBAA; KONRADO UIRIAMU KAMINSUKII; JON FURANSHISU ENJERU
116 Vapor deposition method JP51189694 1993-11-19 JPH08507870A 1996-08-20 ジェームス ケアンズ; ジェームス トムソン
There is described a method of chemically depositing a substance. The method is of utility in the direct manufacture of integrated circuits and in the manufacture of a photomask for use in production of integrated circuits. The method involves the use of a compound which degrades into a deposit and a residue when a radiant beam (e.g. a laser beam) or a particle beam (e.g. an electron beam) is applied. The residue and any unreacted compound may be washed off the substrate to which it has been applied. Nanoscale dimensions of the deposit can be achieved. A particularly suitable organometallic compound is tetra-sec butyl diaurum difluoride.
117 Catalyzed hydrocarbyllithiu7m process JP9282394 1994-03-23 JPH06298772A 1994-10-25 ROBAATO CHIYAARUZU MORISON; RANDEI UINFURETSUDO HOORU; JIEEMUSU ANSONII SHIYUUINDOMAN; KONRADO UIRIAMU KAMIENSUKII; JIYON FURANSHISU ENJIERU
PURPOSE: To provide a process for alkylating an alkali metal with an alkyl halide containing 3 to 20 carbon atoms. CONSTITUTION: An alkali metal selected from lithium, sodium and potassium is reacted in a hydrocarbon solvent in the presence of the a catalytic compound of the formula (RR 1R 2M a) yA(R 3) x (R, R 1 and R 2 are each selected from H, halogen, 1-13C alkyl and alkenyl groups 3-10C cycloalkyl group and 6-18C aryl group; R 3 is selected from 1-10C alkyl group and 2-5C alkylene group; Ma is selected from silicon, carbon, germanium and tin; (x) and (y) are each independently 0 to 3). COPYRIGHT: (C)1994,JPO
118 JPH05502020A - JP51557790 1990-10-15 JPH05502020A 1993-04-15
119 JPS6125037B2 - JP9404777 1977-08-05 JPS6125037B2 1986-06-13 JOSEFU MERUBIN FUREMONTO
120 JPS6110475B2 - JP15034076 1976-12-16 JPS6110475B2 1986-03-29 HARA HAJIME; KAIYA ATSUSHI; ARAKI YOSHIHIKO
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