CAS: 76890-98-7; Copper(Ii) Methoxide

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    📜无水氯化铜,Magnesium Methoxide,7-8% In Methanol 反应生成 甲氧基铜
    参考文献:Bhattacharya,Ajit K.
    标题:Bhattacharya,Ajit K.

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    专利信息


    专利号:US-7652164-B2
    优先权日:2005-09-13
    标题:Process for the direct synthesis of trialkoxysilane
    发明人:LEWIS KENRICK M; MEREIGH ABELLARD T; O'YOUNG CHI-LIN; CAMERON RUDOLPH A
    权利人:MOMENTIVE PERFORMANCE MAT INC
    摘要:The Direct Synthesis of trialkoxysilane is carried out by conducting the Direct Synthesis reaction of silicon and alcohol, optionally in solvent, in the presence of a catalytically effective amount of Direct Synthesis catalyst and an effective catalyst-promoting amount of Direct Synthesis catalyst promoter, said promoter being an organic or inorganic compound possessing at least one phosphorus-oxygen bond.

    专利号:US-9221821-B2
    优先权日:2012-06-05
    标题:Methods for the synthesis of 1,3-substituted aminouracils and other xanthine-related compounds
    发明人:DIEP NHUT; KALYAN YURIY B
    权利人:FOREST LAB HOLDINGS LTD; FOREST LAB HOLDINGS LTD
    摘要:Methods for the synthesis of disubstituted aminouracils and xanthine and/or xanthine-related compounds are provided.

    专利号:US-6437139-B1
    优先权日:1997-05-06
    标题 :Synthesis of pharmaceutically useful pyridine derivatives
    发明人:ZOGHBI MICHEL; CHEN LIQUIN
    权利人:PDI RES LAB INC
    摘要:A process is provided for the preparation of compounds of formula I,useful in the preparation of compounds such as Omeprazole, Lansoprazole and Pantoprazole, wherein R1=H or CH3, R2=H or CH3, R3=Alkoxy (1-4C), OCH2CF3, Cyano, Hydrogen, Halogen, Acetoxy or Aryloxy, any electron withdrawing group or salts (organic or inorganic) of electron donating groups, R=Alkoxy, Hydroxy, Halogen, Activated ester, Tosylate, Mesylate, Thiol or Xanthyl, wherein the process for the preparation of compound of formula I employs a free radical reaction to functionalize the 2-position.

    专利号:US-7388113-B2
    优先权日:2002-01-18
    标题 :Volatile copper(II) complexes for deposition of copper films by atomic layer deposition
    发明人:BRADLEY ALEXANDER ZAK; THORN DAVID LINCOLN
    权利人:DU PONT
    摘要:The present invention relates to a process for the synthesis of novel 1,3-diimine copper complexes using amino-imines and novel amino-imines.

    专利号:US-4992480-A
    优先权日:1986-12-19
    标 题:Homogeneous catalyst formulations for methanol production
    发明人:MAHAJAN DEVINDER; SAPIENZA RICHARD S; SLEGEIR WILLIAM A; O'HARE THOMAS E
    权利人:ASS UNIVERSITIES INC
    摘要:There is disclosed synthesis of CH3OH from carbon monoxide and hydrogen using an extremely active homogeneous catalyst for methanol synthesis directly from synthesis gas. The catalyst operates preferably between 100 DEG -150 DEG C. and preferably at 100-150 psia synthesis gas to produce methanol. Use can be made of syngas mixtures which contain considerable quantities of other gases, such as nitrogen, methane or excess hydrogen. The catalyst is composed of two components: (a) a transition metal carbonyl complex and (b) an alkoxide component. In the simplest formulation, component (a) is a complex of nickel tetracarbonyl and component (b) is methoxide (CH3O-), both being dissolved in a methanol solvent system. The presence of a co-solvent such as p-dioxane, THF, polyalcohols, ethers, hydrocarbons, and crown ethers accelerates the methanol synthesis reaction.

    专利号:US-2024215280-A1
    优先权日:2022-10-31
    标 题:In situ core/shell perovskite nanocrystal material, method of preparation thereof, and light emitting device comprising the same
    发明人:LEE TAE-WOO; KIM JOO SUNG
    权利人:SEOUL NAT UNIV R&DB FOUNDATION; PEROLED CO LTD
    摘要:The present inventive concept relates to an in situ core/shell perovskite nanocrystal film formed by an in situ nanocrystal synthesis process, a method for producing the same, and a light emitting device comprising the same as a light-emitting layer. The in situ core/shell perovskite nanocrystal film formed by the in situ nanocrystal synthesis process according to the present inventive concept exhibits a strong charge confinement effect by nanocrystal formation, and can simultaneously greatly improve the luminescence efficiency and lifetime by maintaining the fast charge transport capability of polycrystalline perovskite.

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