CAS: 18479-51-1; 3,7-Dimethyloct-6-En-3-Ol

该化合物是一种由细小的花粉气味形成的饱和的三级酒精,作为一种稳定,无色的液体,由于耐氧化和聚合作用,确保香水应用中的长寿,广泛用于香气配方;其化学稳定性也使其适合于肥皂,洗涤剂和化妆品中需要一致的气味特征的用途;此外,二氢氟辛醇是有机合成的多种中间体,特别是在生产维生素和口味化合物方面;其低的挥发性和与各种溶剂的兼容性提高了其在工业和精细化学工艺中的效用.

结构式图片

欧盟法规

REACH注册ECHA物质C&L通报REACH预注册

上下游产品

芳樟醇 3,7-Dimethylocta-1,6-Dien-3-Ol 78-70-6
3,7-二甲基-6-辛烯-1-炔基-3-醇 3,7-Dimethyloct-6-En-1-Yn-3-Ol 29171-20-8

合成工艺路线路线简述

  • 合成目标产物 3,7-Dimethyl-6-Octen-3-Ol 主要起始原料 Linalool
  • (文献来源)合成步骤主要原料 Linalool
📜芳樟醇置于锰,5%-Palladium/activated Carbon,水,氯化铵体系中,用93%的收率获得二氢芳樟醇
参考文献:使用锰/水作为氢气源对不饱和化合物进行温和选择性氢化
标题:使用锰/水作为氢气源对不饱和化合物进行温和选择性氢化
摘要:描述了使用锰/水温和且高选择性地还原烯烃和炔烃.高度受控的h 2生成允许在不稳定官能团存在下在温和且环境可接受的条件下选择性还原这些化合物.
Doi:10.1021/acs.Orglett.3C03664

海关参考信息

专利信息


专利号:US-7070757-B2
优先权日:2000-10-02
标 题:Method for producing catalysts consisting of metal of the platinum group by means of electroless deposition and the use thereof for the direct synthesis of hydrogen peroxide
发明人:FISCHER MARTIN; BUTZ THOMAS
权利人:BASF AG
摘要:Catalysts produced by electroless deposition of at least one platinum metal on a nonporous nonmetallic support can be used for the synthesis of hydrogen peroxide from the elements and for the hydrogenation of organic compounds.

专利号:US-8003843-B2
优先权日:2006-04-25
标 题:Transport of ethyne in form of α-alkynols as ethyne precursors
发明人:WILDERMANN ANGELA; BONRATH WERNER; HELLMANN GUNTHER
权利人:DSM IP ASSETS BV
摘要:The present invention relates to a new method for a safe transport of ethyne in form of α-alkynols as precursors for ethyne. The new method comprises three steps. In a first step the synthesis of the α-alkynol(s) is performed by reacting ethyne with (a) carbonyl compound(s). The second step comprises the transport of the resulting α-alkynol(s) in a safe manner, whereas the safety requirements for this transport are not as high as for ethyne because α-alkynol(s) are normally classified for transportation as hazardous class 3. In the third step the α-alkynol(s) can be cleaved and the ethyne and the carbonyl compound(s) can be obtained in the cleavage reaction and can be separated to yield pure products for further applications.

专利号:US-2004037770-A1
优先权日:2000-10-02
标题 :Method for producing catalysts consisting of metal of the platinum group by means of electroless deposition and the use thereof for the direct synthesis of hydrogen peroxide

专利号:CN-1468148-A
优先权日:2000-10-02
标题 :Process for the preparation of catalysts containing platinum group metals by electroless deposition and their use for the direct synthesis of hydrogen peroxide

专利号:CN-1276789-C
优先权日:2000-10-02
标题:Method for preparing a catalyst comprising a platinum group metal by electroless deposition and use thereof for the direct synthesis of hydrogen peroxide

专利号:US-8865624-B2
优先权日:2010-09-01
标题 :Inhibitor for tobacco axillary bud growth and method for inhibiting tobacco axillary bud growth
发明人:TANAKA MOTOKI; TANAKA KEIJITSU; SHIBUYA TAKESHI; IKUTA EIJI; YOSHINAGA KOTARO; YAMAGUCHI YUKI
权利人:TANAKA MOTOKI; TANAKA KEIJITSU; SHIBUYA TAKESHI; IKUTA EIJI; YOSHINAGA KOTARO; YAMAGUCHI YUKI; SDS BIOTECH CORP
摘要:The present invention relates to an inhibitor for tobacco axillary bud growth, the inhibitor comprising, as an active ingredient, one or more kinds of very-long chain fatty acid synthesis inhibitors such as a chloroacetamide-based herbicide, fentrazamide, cafenstrole or indanofan; an inhibitor for tobacco axillary bud growth, the inhibitor comprising the aforesaid very-long chain fatty acid synthesis inhibitor together with clorthal-dimethyl or an aliphatic alcohol having 6 to 20 carbon atoms; and a method for inhibiting tobacco axillary bud growth which comprises applying the inhibitor for tobacco axillary bud growth. The inhibitor for tobacco axillary bud growth of the present invention shows sustained drug efficacy at a low concentration, induces neither chemical injury nor disease, and can contribute to the improvement in labor productivity.

供应商参考报价(招募中)

品牌试剂参考报价(招募中)

📌 第三方产品分析报告

✅ COA系统入驻 | 共享模式

合成参考文献


参考文献:10.1007/s00216-010-3516-z
摘要:Knecht MR, Pacardo DB. Employing high-resolution materials characterization to understand the effects of Pd nanoparticle structure on their activity as catalysts for olefin hydrogenation. Analytical and Bioanalytical Chemistry. 2010 Feb 16;397(3):1137–55. doi: 10.1007/s00216-010-3516-z.
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