CAS: 35141-36-7; Trimethyl[3-(Trimethoxysilyl)Propyl]Ammonium (Chloride)

该化合物是一种四硝基硅酸铵联结剂,具有反应性三甲基硅合金组和辛基三甲基酰胺混合物.该化合物被广泛用作表面修饰剂,在有机聚合物和无机基子之间提供了强大的粘合促进作用.甲基环氧化合物组能够与含氢氧表面进行水解和凝聚,而四硝基铵组具有抗微生物和抗静态特性.在甲酸中溶性能便于处理和应用涂层,粘合物和合成物.该产品因其双重功能而特别具有价值,在工业和生物医学应用中提高了材料的兼容性和性.由于乙醇含量和再活性,需要妥善处理.

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2530-86-1 41051-80-3 10049-42-0

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ECHA物质C&L通报REACH预注册

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    专利信息


    专利号:US-11851651-B2
    优先权日:2017-06-19
    标 题 :Automated methods for scalable, parallelized enzymatic biopolymer synthesis and modification using microfluidic devices
    发明人:BANAL JAMES; BERLEANT JOSEPH DON; SHEPHERD TYSON; BATHE MARK
    权利人:MASSACHUSETTS INST TECHNOLOGY
    摘要:Methods for the automated template-free synthesis of user-defined sequence controlled biopolymers using microfluidic devices are described. The methods facilitate simultaneous synthesis of up to thousands of uniquely addressed biopolymers from the controlled movement and combination of regents as fluid droplets using microfluidic and EWOD-based systems. In some forms, biopolymers including nucleic acids, peptides, carbohydrates, and lipids are synthesized from step-wise assembly of building blocks based on a user-defined sequence of droplet movements. In some forms, the methods synthesize uniquely addressed nucleic acids of up to 1,000 nucleotides in length. Methods for adding, removing and changing barcodes on biopolymers are also provided. Biopolymers synthesized according to the methods, and libraries and databases thereof are also described. Modified biopolymers, including chemically modified nucleotides and biopolymers conjugated to other molecules are described.

    专利号:US-6251280-B1
    优先权日:1999-09-15
    标 题 :Imprint-coating synthesis of selective functionalized ordered mesoporous sorbents for separation and sensors
    发明人:DAI SHENG; BURLEIGH MARK C; SHIN YONGSOON
    权利人:UNIV TENNESSEE RES CORP; U T BATTELLE LLC
    摘要:The present invention relates generally to mesoporous sorbent materials having high capacity, high selectivity, fast kinetics, and molecular recognition capability. The invention also relates to a process for preparing these mesoporous substrates through molecular imprinting techniques which differ from convention techniques in that a template molecule is bound to one end of bifunctional ligands to form a complex prior to binding of the bifunctional ligands to the substrate. The present invention also relates to methods of using the mesoporous sorbent materials, for example, in the separation of toxic metals from process effluents, paints, and other samples; detection of target molecules, such as amino acids, drugs, herbicides, fertilizers, and TNT, in samples; separation and/or detection of substances using chromatography; imaging agents; sensors; coatings; and composites.

    专利号:US-6733828-B2
    优先权日:2002-01-29
    标 题 :Method of fabricating nanostructured materials
    发明人:CHAO KUEI-JUNG; YANG CHIA-MIN
    摘要:A method of confined synthesis of nanostructured material inside a mesoporous material. The method includes the step of providing mesoporous material having uniform and ordered mesopores. Next, a monolayer of charged functional group is attached on the pore surface of mesoporous host material by reacting with functional molecule. A oppositely-charged molecule is incorporated into the confined space of mesoporous material by either ion exchange or incipient wetness impregnation. Finally, the incorporated molecule is reduced or oxidized or further reacted with secondarily-incorporated molecule to form nanostructured material in mesoporous material.

    专利号:US-7785563-B2
    优先权日:2005-10-14
    标 题:Method of the preparation of microporous crystalline molecular sieve possessing mesoporous frameworks
    发明人:RYOO RYONG; CHOI MINKEE
    权利人:KOREA ADVANCED INST SCI & TECH
    摘要:The present invention relates to a method of preparing a microporous crystalline molecular sieve having mesoporous skeleton, comprising following steps: (a) adding a meso-SDA (meso-Structure Directing Agent) into a gel composition of synthesizing molecular sieve, (b) subjecting the mixture obtained in the above step (a) to crystallization by a hydrothermal reaction, a microwave reaction, a dry-gel synthesis, etc., and (c) removing selectively organic materials from the resulted material obtained in the above step (b) by a calcination or a chemical treatment. Molecular sieve having mesoporous skeleton synthesized by the present invention exhibits, as compared with conventional zeolite, a good molecule diffusion ability and a greatly improved catalytic activity.

    专利号:AU-2020226216-A1
    优先权日:2019-02-21
    标题:Direct nanoemulsion process for the synthesis of spheroidal organosiloxane sub-micron/nanoparticles

    专利号:CA-3127541-A1
    优先权日:2019-02-21
    标 题 :Direct nanoemulsion process for the synthesis of spheroidal organosiloxane sub-micron/nanoparticles
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    主要参考文献

    [参考文献]: Abhijit Chatterjee, Et Al. A Reactivity Index Study To Monitor The Role Of Solvation On The Interaction Of The Chromophores With Amino-Functional Silanol Surface For Colorimetric Sensors. J Mol Graph Model. 2006 Oct;25(2):208-18.
    [参考文献]: Chenyu Jin, Et Al. Synthesis Of A Dna-Silica Complex With Rare Two-Dimensional Square P4Mm Symmetry. Angew Chem Int Ed Engl. 2009;48(49):9268-72.
    [参考文献]: Chiara Spagnoli, Et Al. Hyaluronan Conformations On Surfaces: Effect Of Surface Charge And Hydrophobicity. Carbohydr Res. 2005 Apr 11;340(5):929-41.
    [参考文献]: Chieh-Jui Tsou, Et Al. Local Ph Tracking In Living Cells. Nanoscale. 2015 Mar 7;7(9):4217-25.
    [参考文献]: Daniela Paunescu, Et Al. Detecting And Number Counting Of Single Engineered Nanoparticles By Digital Particle Polymerase Chain Reaction. Acs Nano. 2015 Oct 27;9(10):9564-72.

    合成参考文献


    参考文献:10.1038/s41596-019-0184-0
    摘要:Jing X, Zhang F, Pan M, Dai X, Li J, Wang L, Liu X, Yan H, Fan C. Solidifying framework nucleic acids with silica. Nat Protoc. 2019 Aug;14(8):2416–36. doi: 10.1038/s41596-019-0184-0.
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