CAS: 52217-57-9; Trimethoxy(Oct-7-En-1-yl)Silane

该化合物是有机硅化合物,其独特结构将硅状组与正烷链结合,其特性为:三氧基硅烷功能组,其特性为:三氟氧基硅与各种基质的再活动性和兼容性增强,使其在表面修改和粘合应用中有用;八氟基组的存在具有疏水特性,并允许潜在的聚合或交叉反应,从而有利于产生以硅为基的涂层或密封剂.此外,该化合物一般无色至浅黄色,且可能有中度波动性.该化合物与湿度的再活动可形成硅醇组,从而便利与硅状材料的粘合.

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ECHA物质C&L通报REACH预注册

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    专利号:US-9303055-B2
    优先权日:2001-03-14
    标题 :Linkers and co-coupling agents for optimization of oligonucleotide synthesis and purification on solid supports
    发明人:GAO XIAOLIAN; ZHANG HUA; YU PEILLIN; LEPROUST ERIC; PELLOIS JEAN PHILIPPE; XIANG QIN; ZHOU XIAOCHUAN
    权利人:UNIV MICHIGAN; UNIV HOUSTON
    摘要:A method of modulation of synthesis capacity on and cleavage properties of synthetic oligomers from solid support is described. The method utilizes linker molecules attached to a solid surface and co-coupling agents that have similar reactivities to the coupling compounds with the surface functional groups. The preferred linker molecules provide an increased density of polymers and more resistance to cleavage from the support surface. The method is particularly useful for synthesis of oligonucleotides, oligonucleotides microarrays, peptides, and peptide microarrays. The stable linkers are also coupled to anchor molecules for synthesis of DNA oligonucleotides using on support purification, eliminating time-consuming chromatography and metal cation presence. Oligonucleotides thus obtained can be directly used for mass analysis, DNA amplification and ligation, hybridization, and many other applications.

    专利号:US-7943116-B1
    优先权日:2008-01-24
    标 题 :High-yield synthesis of brookite TiO2 nanoparticles
    发明人:HUBER DALE L; MONSON TODD C
    权利人:SANDIA CORP
    摘要:A method for forming non-agglomerated brookite TiO 2 nanoparticles without the use of expensive organic surfactants or high temperature processing. Embodiments of this invention use titanium isopropoxide as the titanium precursor and isopropanol as both the solvent and ligand for ligand-stabilized brookite-phase titania. Isopropanol molecules serve as the ligands interacting with the titania surfaces that stabilize the titania nanoparticles. The isopropanol ligands can be exchanged with other alcohols and other ligands during or after the nanoparticle formation reaction.

    专利号:CN-110694672-B
    优先权日:2019-11-05
    标 题 :Preparation method of supported copper-based catalyst and application of supported copper-based catalyst in synthesis of ethylene glycol

    专利号:US-10954139-B2
    优先权日:2015-12-11
    标 题:Oleophilic foams for oil spill mitigation
    发明人:DARLING SETH B; ELAM JEFFREY W; MANE ANIL U
    权利人:UCHICAGO ARGONNE LLC
    摘要:A method of fabricating an oleophilic foam includes providing a foam comprising a base material. The base material is coated with an inorganic material using at least one of an atomic layer deposition (ALD), a molecular layer deposition (MLD) or sequential infiltration synthesis (SIS) process. The SIS process includes at least one cycle of exposing the foam to a first metal precursor for a first predetermined time and a first partial pressure. The first metal precursor infiltrates at least a portion of the base material and binds with the base material. The foam is exposed to a second co-reactant precursor for a second predetermined time and a second partial pressure. The second co-reactant precursor reacts with the first metal precursor, thereby forming the inorganic material on the base material. The inorganic material infiltrating at least the portion of the base material. The inorganic material is functionalized with an oleophilic material.

    专利号:US-2003120035-A1
    优先权日:2001-03-14
    标 题:Linkers and co-coupling agents for optimization of oligonucleotide synthesis and purification on solid supports

    专利号:US-7211654-B2
    优先权日:2001-03-14
    标 题:Linkers and co-coupling agents for optimization of oligonucleotide synthesis and purification on solid supports
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    合成参考文献


    参考文献:10.1007/s11696-023-02898-x
    摘要:He X, Sui D. Surface morphology analysis and hydrophobic property design for cotton clothing fabric based on vinyl-bearing silane coupling agent. Chem. Pap. 2023 Jun 06;77(10):5807–15. doi: 10.1007/s11696-023-02898-x.
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