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专利信息
专利号:US-11407993-B2
优先权日:2017-02-14
标 题 :Method for the synthesis of DNA conjugates by micellar catalysis
发明人:BHAT AVINASH SHASHIDHAR; KLIKA SKOPIC MATEJA; BRUNSCHWEIGER ANDREAS; WEBERSKIRCH RALF
权利人:UNIV DORTMUND TECH
摘要:A method for the synthesis of a chimeric conjugate molecule by micellar catalysis that may form part of DNA-encoded compound libraries. A DNA-coupled organic starter molecule may be reacted with another organic compound, using a catalyst located within a micelle, to form a conjugate of an organic candidate compound coupled to a DNA identifier tag.
专利号:US-6610802-B2
优先权日:2001-05-29
标题 :Process for synthesis of polymer compositions, polymer compositionS obtainable by the process, and use of the same
发明人:ROOS SEBASTIAN; EISENBERG BORIS; HARPE CAROLIN
权利人:ROHMAX ADDITIVES GMBH
摘要:The present invention relates to a process for synthesis of polymer compositions with reduced catalyst content, wherein ethylenically unsaturated monomers containing less than 0.5 wt % of ethylenically unsaturated monomers with at least one carboxylic group, sulfonic acid group and/or at least one phosphonic acid group relative to the total weight of the ethylenically unsaturated monomers are polymerized by means of initiators containing a transferable group of atoms and of one or more catalysts comprising at least one transition metal in the presence of ligands which can form a coordination compound with the metal catalyst or catalysts and, after the polymerization, the catalyst contained in the polymer is at least partly separated. For this purpose, the polymer composition is filtered, after the polymerization, in the presence of at least one filter aid which contains at least 0.5 wt %, relative to the total weight of the filter aid, of repeating units that contain at least one carboxylic acid group, sulfonic acid group and/or at least one phosphonic acid group.
专利号:US-4910330-A
优先权日:1987-09-25
标题 :Synthesis of sulfonic acids and carboxylic acid ester derivatives thereof
发明人:MCGEE DENNIS E; HALLEN TED S
权利人:UNION OIL CO
摘要:Hydroxy sulfonic acids in general and isethionic acid (2-hydroxy ethyl sulfonic acid) in particular can be prepared at 99+% purity and good yields by the selective oxidation of a precursor hydroxy mercaptan with hydrogen peroxide. The resulting product is pure enough to be used directly in the synthesis of sulfo-acrylic esters which are finding considerable use as stabilizers in producing vinylidene chloride copolymers used for FDA approved packaging films.
专利号:US-4987250-A
优先权日:1987-09-25
标 题:Synthesis of hydroxy sulfonic acids
发明人:MCGEE DENNIS E; HALLEN TED S
权利人:UNION OIL CO
摘要:Hydroxy sulfonic acids in general and isethionic acid (2-hydroxy ethyl sulfonic acid) in particular can be prepared at 99+% purity and good yields by the selective oxidation of a precursor hydroxy mercaptan with hydrogen peroxide. The resulting product is pure enough to be used directly in the synthesis of sulfo-acrylic esters which are finding considerable use as stabilizers in producing vinylidene chloride copolymers used for FDA approved packaging films.
专利号:EP-4428168-A1
优先权日:2023-03-08
标 题 :Polyurethane/oligomeric urethane synthesis method by radiation
发明人:AKBULUT HÜSEYIN; ÇEL KBA SENA; ENADA SEHER; U AKLI MÜGE; DEM RBAY DUYGU
权利人:CHT TURKEY KIMYA SANAYI VE TICARET A S
摘要:In particular, the invention relates to the synthesis of radiation-curable polyurethane/oligomeric urethane dispersions of anionic and cationic characters, containing neutralization techniques characterized by the selection of counter ions as monomers and/or agents which can be polymers acting as promoters under radiation, to a radiation polyurethane/oligomeric urethane synthesis method that enables the creation of radiation curable binder systems without using cosolvents, surfactants, emulsifiers, defoamers, stabilizers and additives, wherein all components of the radiation-curable binder systems can be polymerized.
专利号:US-6217901-B1
优先权日:1999-05-25
标题:Liposome-assisted synthesis of polymeric nanoparticles
发明人:PERROTT MICHAEL G; BARRY STEPHEN E
权利人:ALNIS LLC
摘要:Synthetic polymer complements (SPCs) are provided, as well as methods for their synthesis and use. The SPCs range in size from about 20 to about 1000 nm. The SPCs have surfaces that are complementary to surface sites of target molecules, resulting in the ability of the SPCs to selectively bind to molecular targets. The molecular recognition capability of these particles enables their use in diagnostic, therapeutic, and separation applications. The SPC is formed by contacting a target template molecule with a set of building blocks solubilized in the interior of a liposome, which building blocks are then polymerized into a network to form the synthetic polymer complement in the interior of the liposome. The target templates are removed to produce complementary sites in a SPC that map the surface of the target, resulting in a water-soluble SPC nanoparticle of similar dimensions as the interior of the liposome that originally supported it and capable of molecular recognition.