CAS: 1675-69-0; Nonanedinitrile

该化合物是硝基有机化合物,可用于特殊化学合成和制药中间体,其主要优势包括稳定的硝酸功能组,有利于进一步衍生成氨,酸或异环结构;该复合体在普通有机溶剂中表现出良好的溶解性,能够产生多种反应条件;其分子结构允许选择性反应,使其在受控合成途径中发挥作用;亚泽拉尼里经常被用于生产精细化学品,农用化学品和生物活性分子,因为其性能可靠,而且与各种催化系统兼容;需要适当处理,因为其在某些条件下具有潜在的毒性和再活性.

结构式图片

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123-99-9 119176-67-9 1871-96-1

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CAS号123-99-9 壬二酸 | CAS号111-24-0 1,5-二溴戊烷 | CAS号51526-03-5 1,7-二碘庚烷 | CAS号151-50-8 氰化钾 | CAS号4549-31-9 1,7-二溴庚烷 | CAS号143-33-9 氰化钠 | CAS号628-77-3 1,5-二碘戊烷 | CAS号75-05-8 乙腈 | CAS号628-76-2 1,5-二氯戊烷 | CAS号4549-33-1 1,9-二溴壬烷 | CAS号3937-56-2 1,9-壬二醇 | CAS号1842-72-4 Azelaamide | CAS号123-99-9 壬二酸 | CAS号646-24-2 1,9-二氨基壬烷 | CAS号624-17-9 壬二酸二乙酯 | CAS号92802-46-5 (9ci)-2-氨基-1-环辛... | CAS号63906-97-8 (9-azaniumyl-9-...

合成工艺路线路线简述

    📜壬二酸置于zinc(II) Oxide 氨体系中,化学反应 17.0H,以85%的收率获得壬二腈
    参考文献:Method For The Synthesis Of High Purity Primary Diamines And/or Triamines
    标题:Method For The Synthesis Of High Purity Primary Diamines And/or Triamines
    摘要:本发明涉及一种从可能源自二聚体和/或三聚体酸的腈制备高纯度的主要二元和/或三元胺的过程.该过程包括对酸性官能团进行氨化处理和对腈性官能团进行氢化处理的阶段,以形成主要胺官能团,并且不需要额外的纯化阶段.

    海关参考信息

    专利信息


    专利号:EP-4556461-A1
    优先权日:2023-11-16
    标 题 :Process for the synthesis of salts with an organic anion useful as ionic conducting materials
    发明人:KUNERT ROMAIN; BERNARD LAURENT; PICARD LIONEL
    权利人:COMMISSARIAT ENERGIE ATOMIQUE
    摘要:The present invention relates to a process for the preparation of a salt comprising an organic anion corresponding to a formula (I) comprising: M + , an alkali metal cation; R 1 , R 2 , R 3 , R 4 , independently, a radical chosen from: chlorine, anionic sulfonamide units of formula (IIa): R a -SO 2 -N - -, and anionic dinitrile units of formula (IIIa): CN-(R b ) - CN, with at least one of the radicals R 1 , R 2 , R 3 , R 4 being other than chlorine; said process comprising at least the step of contacting, in a solvent medium and in the presence of an alkali metal base, chloranil with at least one compound of formula (II) R a -SO 2 -NH 2 or (III) CN-R b -CN to form said salt comprising an organic anion of formula (I).

    专利号:US-3919325-A
    优先权日:1972-03-01
    标题 :Process for preparing allylidenphosphoranes
    发明人:BOGDANOVIC BORISLAV
    权利人:STUDIENGESELLSCHAFT KOHLE MBH
    摘要:Allylidene phosphoranes are prepared by a new process comprising reacting dialkyl aluminum alkylidene amides or bis(N-dialkyl aluminum-imino)alkanes which are obtainable from saturated aliphatic nitriles or dinitriles and dialkyl aluminum hydrides with alkylidene phosphoranes R3CH PR34. The allylidene phosphoranes are useful as intermediate products in the synthesis of 1,3-dienes which include insect attracting substances and flavoring agents, and in the synthesis of 1,5-dienes such as squalene.

    专利号:US-2011190541-A1
    优先权日:2006-10-27
    标 题 :Method for the synthesis of high purity primary diamines and/or triamines

    专利号:US-10729623-B2
    优先权日:2015-05-08
    标 题:Method for producing elliptical, needle-shaped, or rod-shaped polymer particles
    发明人:HAYAKAWA KAZUTOSHI; HASHIBA TOSHIFUMI; MATSUZAKA ERINA; YAMADA Goki
    权利人:NISSHINBO HOLDINGS INC
    摘要:A method for producing elliptical, needle-shaped, or rod-shaped polymer particles satisfying (1)-(3) below includes a step in which a synthesis solution including water, a mixed solvent of a hydrophilic organic solvent and a hydrophobic organic solvent, a polymeric stabilizer, a polymerization initiator, and an unsaturated monomer is heated, and, at least after the heating has started, the pH of the synthesis solution is adjusted to 5-9 inclusive to perform solution polymerization: (1) the average (L AV ) length (L) in a two-dimensional projection diagram obtained by irradiating the particles with light from a direction orthogonal to the longitudinal direction is 0.1-80 μm; (2) the average (D AV ) breadth (D) in the two-dimensional projection diagram obtained by irradiating the particles with light from the direction orthogonal to the longitudinal direction is 0.05-40 μm; and (3) the average (P AV ) aspect ratio (L/D) calculated from the length (L) and the breadth (D) is 1.5-30.

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    合成参考文献


    摘要:Scott, P. J. H., Science of Synthesis Knowledge Updates, (2013) 4, 248.
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