CAS: 4724-48-5; N-Octylphosphonic Acid

该化合物是有机磷化合物,其特征是长的缺氧环乙烷链和磷酸功能组,其形态和纯度不同,其颜色一般是无色的,可粉黄液体或固体,其化学结构包括有机溶剂,但因其具有疏水性质,其溶解性在水中的溶性有限; 环氧磷酸因其能与金属离子形成稳定的复合体而闻名,使其在各种应用中有用,包括作为协调化学的悬浮剂和材料科学的表面修饰剂; 此外,该化合物具有允许其作为腐蚀抑制剂和不同配方的弥散剂的特性,其化学结构包括附属于一个有机锡化合物组的磷酸组(-PO(O(OHA)2)),该组有助于其独特的再活性和与表面的相互作用; 安全数据表明,与许多有机磷化合物一样,应谨慎地加以处理,因为它在接触时可能构成健康风险.

结构式图片

相似化合物

4724-47-4 5137-70-2 4721-24-8

欧盟法规

REACH注册ECHA物质ECHA物质C&L通报REACH预注册

上下游产品

CAS号111-66-0 1-辛烯 | CAS号1068-07-1 1-辛基膦酸二乙酯 | CAS号3466-00-0 磷杂环戊烷 | CAS号281199-47-1 2-°Ctyl-4,4,5,5... | CAS号111-83-1 1-溴代正辛烷 | CAS号5929-67-9 °Ctylphosphonic... | CAS号10052-97-8 n-°Ctyl-phosphinoxid | CAS号3095-90-7 °Ctylphosphane | CAS号6172-97-0 1-dimethoxyphos... | CAS号110-05-4 二叔丁基过氧化物 | CAS号3095-94-1 1-辛基二氯磷酸 | CAS号6172-97-0 1-dimethoxyphos...

合成工艺路线路线简述

    辛烯置于亚膦酸,钯,4,5-双二苯基膦-9,9-二甲基氧杂蒽体系中,用 水,N,N-二甲基甲酰胺 作为反应溶剂,化学反应 24.0H,以100%的收率获得产物辛基膦酸
    参考文献:无三氯化磷的有机磷合成:次磷途径的案例
    标题:无三氯化磷的有机磷合成:次磷途径的案例
    摘要:摘要 目前,绝大多数有机磷化合物是由三氯化磷 (Pcl3) 合成的,尽管最终消费产品不包含活性磷-氯键.为了绕过三氯化磷,人们对元素磷(p4,Pcl3 的前体),红磷 (Pred) 或磷化氢 (Ph3) 进行了功能化.然而,其他工业规模的前体是次磷衍生物(h3Po2 及其碱金属盐),但它们作为三氯化磷替代品的用途已被完全忽视.在这里,案例是基于次磷酸盐工业合成有机磷化合物的替代方法.图形概要
    DOI:10.1080/10426507.2012.727925

    海关参考信息

    专利信息


    专利号:US-8933181-B2
    优先权日:2006-10-06
    标题:Branched polymers and methods for their synthesis and use
    发明人:MOURI HIROSHI; LUO STEVEN; KURASCH JESSICA; ROBERTSON CHRISTOPHER G; WARREN SANDRA
    权利人:MOURI HIROSHI; LUO STEVEN; KURASCH JESSICA; ROBERTSON CHRISTOPHER G; WARREN SANDRA; BRIDGESTONE CORP
    摘要:Branched polymers including multi-branched polymers, functionalized branched polymers, star-branched polymers, and dendigraft polymers. Methods for the synthesis of branched polymers and method for the use of branched polymers in tire components are also included.

    专利号:US-2024309271-A1
    优先权日:2021-02-20
    标题:Population of alloy nanocrystals, population of core-shell nanocrystals, and use thereof and synthesis method therefor
    发明人:PENG XIAOGANG; HUANG LIN; Li Jiongzhao
    权利人:UNIV ZHEJIANG; NAJING TECH CORP LTD
    摘要:The present disclosure provides a population of alloy nanocrystals, a population of core-shell nanocrystals, and a synthesis method therefor, a composition comprising same, and an electronic device. The population of alloy nanocrystals comprises a plurality of alloy nanocrystals, wherein each of the alloy nanocrystals comprises a first group II element, a second group II element, and a first group VI element, the population of alloy nanocrystals has a Raman peak with a full-width-at-half-maximum of less than or equal to 15 cm−1, and the alloy nanocrystals have an average size greater than a diameter of an exciton of a corresponding bulk alloy compound. The population of alloy nanocrystals has an excellent narrow full-width-at-half-maximum.

    专利号:US-7276598-B2
    优先权日:2003-04-09
    标 题:Phosphorylation reagents for improved processes to convert terminal hydroxyl groups of oligonucleotides into phosphate monoesters
    发明人:VAGLE KURT; LEUCK MICHAEL; WOLTER ANDREAS
    权利人:SIGMA ALDRICH CO
    摘要:The present invention discloses novel phosphoramidite reagents for use in oligonucleotide synthesis. The present invention further discloses novel methods for the conversion of terminal hydroxyl groups of oligonucleotides into phosphate monoesters. By employing novel reagents, as also disclosed herein, the methods are fully compatible with standard procedures for solid phase oligonucleotide synthesis and do not require additional processing steps. The inventive reagents to phosphorylate terminal hydroxyl groups of oligonucleotides are superior to the prior art in that they for the first time combine the desired attributes of being a solid compound for facile handling, comprising two β-eliminating protective groups removable as fast or faster than the standard cyanoethyl group, providing a DMT-group for easy monitoring of the coupling efficiency, and enabling a fast final deprotection of the phosphorylated oligonucleotide without any extra manipulation steps.

    专利号:US-2023028670-A1
    优先权日:2021-07-16
    标 题 :Method of manufacturing multi-component semiconductor nanocrystal, multi-component semiconductor nanocrystal, and quantum dot including the same
    发明人:LEE BAEKHEE; LYU JAEJIN; LEE JUNWOO; LEE TAEKJOON
    权利人:SAMSUNG DISPLAY CO LTD
    摘要:Provided are a method of manufacturing a multi-component semiconductor nanocrystal, a multi-component semiconductor nanocrystal manufactured by the method, and a quantum dot including the same. The method includes irradiating microwaves to a semiconductor nanocrystal synthesis composition, and the semiconductor nanocrystal synthesis composition includes a precursor including a Group I element, a precursor including a Group II element, a precursor including a Group III element, a precursor including a Group V element, a precursor including a Group VI element, or any combination thereof.

    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.

    专利号:US-2014034121-A1
    优先权日:2010-09-14
    标 题 :Multistage surface modification procedure of semiconducting nanoparticles for use in hybrid solar cells and printable electronics
    发明人:RAUSCHER FRANK; NIYAMAKOM PHENWISA; HOHEISEL WERNER; PLUG SASCHA
    权利人:BAYER IP GMBH
    摘要:The present invention relates to a method for treatment of semiconducting nanoparticles wherein in a step A semiconducting nanoparticles comprising long chain insulting primary ligands are dispersed in a volatile dispersion solvent capable of dissolving insulating primary ligands and precipitated using a washing agent. TGA-MS analysis shows that the treatment according to the method of the present invention allows complete removal of the outer layer of synthesis ligands of the surface of prepared nanoparticles and improves removal of synthesis ligands on the surface of prepared nanoparticles. The present invention also relates to semiconducting nanoparticles, ink formulation and electronic devices comprising the semiconducting nanoparticles obtainable by the procedure of the invention.
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    [参考文献]: Andrea Hadjikyriacou, Et Al. Unique Features Of Human Protein Arginine Methyltransferase 9 (Prmt9) And Its Substrate Rna Splicing Factor Sf3B2. J Biol Chem. 2015 Jul 3;290(27):16723-43.
    [参考文献]: B N P Sah, Et Al. Effect Of Refrigerated Storage On Probiotic Viability And The Production And Stability Of Antimutagenic And Antioxidant Peptides In Yogurt Supplemented With Pineapple Peel. J Dairy Sci. 2015 Sep;98(9):5905-16.
    [参考文献]: Beatriz Fernandez-Gomez, Et Al. New Knowledge On The Antiglycoxidative Mechanism Of Chlorogenic Acid. Food Funct. 2015 Jun;6(6):2081-90.
    [参考文献]: Bo-Eun Yoon, Et Al. Glial Gaba, Synthesized By Monoamine Oxidase B, Mediates Tonic Inhibition. J Physiol. 2014 Nov 15;592(22):4951-68.
    [参考文献]: Giuseppe Carlucci, Et Al. Combined Derivatization And High-Performance Liquid Chromatography With Fluorescence And Ultraviolet Detection For Simultaneous Analysis Of Octreotide And Gabexate Mesylate Metabolite In Human Pancreatic Juice Samples. Biomed Chromatogr. 2015 Jun;29(6):911-7.

    合成参考文献


    参考文献:10.1021/jp061327a
    摘要:Hoque E, DeRose JA, Kulik G, Hoffmann P, Mathieu HJ, Bhushan B. Alkylphosphonate modified aluminum oxide surfaces. J Phys Chem B. 2006 Jun 08;110(22):10855–61. doi: 10.1021/jp061327a.
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