专利号:US-4451565-A 优先权日:1981-03-10 标 题:Enzyme-mediated synthesis of esters and lactones 发明人:GATFIELD IAN; SAND THEODOR 权利人:HAARMANN & REIMER GMBH 摘要:In the enzyme-mediated synthesis of an ester or lactone from at least one carboxylic acid of the formula R-CH2-CH2-COOH wherein R is a hydrogen atom, or a hydrocarbon radical which has 1 to 21 carbon atoms and which can be optionally substituted by hydroxyl groups or alkoxy groups with 1 to 10 carbon atoms, with at least one primary or secondary alcohol having 1 to 15 carbon atoms, the improvement which comprises employing as the enzyme the esterase from Mucor miehei and effecting the synthesis in the absence of water. Advantageously, the synthesis is effected at about room temperature, the mol ratio of carboxylic acid to alcohol is from about 1:1 to 1:1.1, and the enzyme is used in a quantity of about 3 to 20% by weight of the carboxylic acid. The absence of water facilitates recovery, as by distillation.
专利号:US-8569560-B2 优先权日:2006-10-13 标题 :Synthesis of terminal alkenes from internal alkenes via olefin metathesis 发明人:SCHRODI YANN; PEDERSON RICHARD L; KAIDO HIROKI; TUPY MICHAEL J 权利人:ELEVANCE RENEWABLE SCIENCES 摘要:This disclosure relates generally to olefin metathesis, and more particularly relates to the synthesis of terminal alkenes from internal alkenes using a cross-metathesis reaction catalyzed by an olefin metathesis catalyst. According to one aspect, for example, a method is provided for synthesizing a terminal olefin, the method comprising contacting, in the presence of a ruthenium alkylidene metathesis catalyst, an olefinic substrate comprised of at least one internal olefin with a cross metathesis partner comprised of an alpha olefinic reactant, under reaction conditions effective to allow cross-metathesis to occur, wherein the reaction conditions include a reaction temperature of at least 35° C. The methods, compositions, reactions and reaction systems herein disclosed have utility in the fields of catalysis, organic synthesis, and industrial chemistry.
专利号:US-2014194584-A1 优先权日:2013-01-07 标题 :Process for the synthesis of w-Unsaturated nitrile-acid/ester in which two types of cross metathesis are alternated consecutively swing process 发明人:DUBOIS JEAN-LUC; COUTURIER JEAN-LUC 权利人:ARKEMA FRANCE 摘要:The invention relates to a process for the synthesis of a monounsaturated nitrile-ester (acid) by cross metathesis starting from an unsaturated compound I comprising at least one trivalent nitrile, acid or ester functional group, characterized in that it comprises a stage in which two types of cross metathesis are alternated consecutively:n a first type of cross metathesis cm1 with an acrylic compound II chosen from acrylonitrile, acrylic acid or an acrylic ester, one of the compounds I or II comprising a nitrile functional group and the other of these compounds II or I comprising an acid or ester functional group, and a second type of cross metathesis cm2 with a light C 2 to C 4 alkene compound III, preferably with ethylene. nn The invention also relates to a process for the synthesis of an α,ω-amino ester (acid) obtained by a process comprising a stage in which the two types of cross metathesis defined above are alternated consecutively, followed by a hydrogenation stage.
专利号:US-2006128930-A1 优先权日:2004-12-03 标题 :Synthesis of sterically hindered phenol based macromolecular antioxidants 发明人:DHAWAN ASHISH; CHOLLI ASHOK L 权利人:DHAWAN ASHISH; CHOLLI ASHOK L 摘要:Disclosed is a method for the synthesis of sterically hindered polymeric antioxidants based on phenol type antioxidant monomers. The method includes polymerizing and alkylating a phenol containing monomer represented by the following structural formula: n n nto produce a sterically hindered polymeric macromolecular antioxidant. X, R 10 and q are as defined herein. The disclosed method is a simple, direct and economical process for the synthesis of sterically hindered polymeric macromolecular antioxidants.
专利号:US-7678877-B2 优先权日:2004-12-03 标题 :Process for the synthesis of polyalkylphenol antioxidants 发明人:YANG SUIZHOU; CHOLLI ASHOK L 权利人:POLNOX CORP 摘要:Disclosed is a method for the synthesis of sterically hindered polymeric antioxidants based on phenol type antioxidant monomers. The method includes partially etherifying, polymerizing and thermally rearranging a phenol containing monomer represented by the following structural formula: n nto produce a sterically hindered polymeric macromolecular antioxidant. X, R 10 and q are as defined herein. The disclosed method is a simple, direct and economical process for the synthesis of sterically hindered polymeric macromolecular antioxidants.
专利号:US-9255117-B2 优先权日:2006-07-13 标题 :Synthesis of terminal alkenes from internal alkenes and ethylene via olefin metathesis 发明人:SCHRODI YANN 权利人:MATERIA INC 摘要:This invention relates generally to olefin metathesis, and more particularly relates to the synthesis of terminal alkenes from internal alkenes using a cross-metathesis reaction catalyzed by a selected olefin metathesis catalyst. In one embodiment of the invention, for example, a method is provided for synthesizing a terminal olefin, the method comprising contacting an olefinic substrate comprised of at least one internal olefin with ethylene, in the presence of a metathesis catalyst, wherein the catalyst is present in an amount that is less than about 1000 ppm relative to the olefinic substrate, and wherein the metathesis catalyst has the structure of formula (II) n nwherein the various substituents are as defined herein. The invention has utility, for example, in the fields of catalysis, organic synthesis, and industrial chemistry.
参考标题:A Bioorthogonal Click Chemistry Toolbox For Targeted Synthesis Of Branched And Well‐defined Protein-Protein Conjugates 作者:Mathis Baalmann,Laura Neises,Sebastian Bitsch,Hendrik Schneider,Lukas Deweid,Philipp Werther,Nadja Ilkenhans,Martin Wolfring,Michael J. Ziegler,Jonas Wilhelm,Harald Kolmar,Richard Wombacher |发布日期:2020.7.27 摘要:Bioorthogonal Chemistry Holds Great Potential To Generate Difficult‐to‐access Protein-Protein Conjugate Architectures. Current Applications Are Hampered By Challenging Protein Expression Systems, Slow Conjugation Chemistry, Use Of Undesirable Catalysts, Or Often Do Not Result In Quantitative Product Formation. Here We Present A Highly Efficient Technology For Protein Functionalization With Commonly
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摘要:Haufe, G., Science of Synthesis Knowledge Updates, (2019) 3, 199. 摘要:Jana, A.; Małecki, P.; Grela, K., Science of Synthesis: N-Heterocyclic Carbenes in Catalytic Organic Synthesis, (2016) 2, 69.