CAS: 432-25-7; 2,6,6-Trimethylcyclohex-1-Ene-1-Carbaldehyde

该化合物是一种有机化合物,用化学配方C10H14O,被归类为单体甲状腺,C10H14O.其特点是,它具有令人愉快的柑橘状芳香,在香味和口味行业中具有价值.该化合物具有环状环状结构,有助于其独特的特性. -环状化学在室温下一般是无色的,在室内无色黄色液体,在有机溶剂中可溶解.它有一个相对较低的沸点,在许多挥发性有机化合物中很常见. 在再活性方面,-环状化学可以经历各种化学变异,包括氧化和减少,还因其潜在的生物活动而闻名,包括抗微生物和抗氧化性特性,在制药和天然产品化学领域引起了兴趣.安全数据表明,在与皮肤或眼睛接触时,它可能会引起刺激,但一般认为在正确处理时毒性较低.

结构式图片

相似化合物

472-66-2 116-31-4 471-90-9

欧盟法规

ECHA物质C&L通报REACH预注册

上下游产品

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合成工艺路线路线简述

  • 9005-53-2 = 432-25-7 + 103-81-1 + 831-00-5 + 22607-11-0 + 74421-05-9 + 2219-78-5 + 219726-60-0 + 94391-24-9 + 60826-26-8 + 7443-70-1 + 51504-54-2 + 72386-20-0 + 79-31-2 + 494-99-5 + 646-07-1 + 4041-09-2 + 1131-62-0 + 56687-68-4 + 93-15-2
    反应条件:1.1 Reagents: Sodium Hydroxide Catalysts: Molybdenum,Copper Solvents: Methanol,Water; 7 H,220 °C1.2 Reagents: Water
    标题:Cu-Mo Doped Zeolite Zsm-5 Catalyzed Conversion Of Lignin To Alkyl Phenols With High Selectivity
    作者:Singh,Sunit Kumar; Et Al
    参考文献:Catalysis Science & Technology 日期:2015 卷标:5(4) 页码:2117-2124
1-Hydroxy-2,2,6-Trimethyl-Cyclohexanecarbonitrile置于吡啶,氯化亚砜,二异丁基氢化铝体系中,用 甲苯,苯 作为反应溶剂,化学反应 3.0H,反应生成 1-吡咯烷羧酸,3-[[(3-溴苯基)氨基]甲基]-,1,1-二甲基乙基酯
参考文献:Kutney,James P.; Gunning,Philip J.; Clewley,Robin G.,Canadian Journal Of Chemistry,1992,Vol. 70,# 7,P. 2094-2114
标题:Kutney,James P.; Gunning,Philip J.; Clewley,Robin G.,Canadian Journal Of Chemistry,1992,Vol. 70,# 7,P. 2094-2114

海关参考信息

专利信息


专利号:WO-9532946-A1
优先权日:1994-05-27
标题 :Methods for the synthesis of 9-cis retinoids and their novel intermediates
发明人:BENNANI YOUSSEF L
权利人:LIGAND PHARM INC
摘要:Methods for the synthesis of 9-cis retinoids, novel intermediates and methods for the synthesis of cyclohexadienyne nitriles and 9-cis alkyl cisoid nitriles, as well as 9-cis retinoids made using such methods are provided.

专利号:US-5817845-A
优先权日:1993-04-21
标题:Methods for stereospecific synthesis of 11,13-cis polyene esters
发明人:WHITE STEVEN K; HWANG CHAN KOU; WINN DAVID T
权利人:LIGAND PHARM INC
摘要:Methods for stereospecific synthesis of 9-cis olefins and retinoids. In one particular aspect, a cis olefin is generated via a lactol ring opening with complete retention of double bond configuration.

专利号:US-11773060-B2
优先权日:2016-05-25
标题 :Method for synthesis of 9-cis-beta-carotene and formulations thereof
发明人:GAZIT EHUD; BUZHANSKY LUDMILA; IOFFE MICHAEL; SAYER ALON
权利人:UNIV RAMOT
摘要:A formulation includes an active agent, a thickening/solidifying agent, and an antioxidant. The active agent is 9-cis-β-carotene (9CBC) or a derivative thereof of the following formula:where R2 is H or methyl; X isoptionally substituted with one or more methyl groups; n is an integer of 0-16; and the asterisk represents the point of attachment to the cyclohexene ring.

专利号:WO-2017203516-A1
优先权日:2016-05-25
标题:Method for synthesis of 9-cis-beta-carotene and formulations thereof

专利号:WO-9424082-A1
优先权日:1993-04-21
标题 :Stereospecific synthesis of polyene compounds

专利号:EP-0760810-A1
优先权日:1994-05-27
标 题 :Methods for the synthesis of 9-cis retinoids and their novel intermediates
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主要参考文献

[参考文献]: Alexandra J Dickinson, Et Al. β-Cyclocitral Is A Conserved Root Growth Regulator. Proc Natl Acad Sci U S A. 2019 May 21;116(21):10563-10567.
[参考文献]: Feifei Lv, Et Al. β-Cyclocitral Upregulates Salicylic Acid Signalling To Enhance Excess Light Acclimation In Arabidopsis. J Exp Bot. 2015 Aug;66(15):4719-32.
[参考文献]: Friedrich Jüttner, Et Al. β-Cyclocitral, A Grazer Defence Signal Unique To The Cyanobacterium Microcystis. J Chem Ecol. 2010 Dec;36(12):1387-97.

合成参考文献


摘要:Taylor, R. E.; Diène, C. R.; Daly, E. M., Science of Synthesis, (2009) 46, 569.
参考文献:10.1186/s12870-017-0988-4
摘要:Li W, Liu C, He M, Li J, Cai Y, Ma Y, Xu J. Largely different contents of terpenoids in beef red-flesh tangerine and its wild type. BMC Plant Biology. 2017 Feb 03;17(1):36. doi: 10.1186/s12870-017-0988-4.
参考文献:10.1007/s00018-019-03202-5
摘要:Sujeeth N, Mehterov N, Gupta S, Qureshi MK, Fischer A, Proost S, Omidbakhshfard MA, Obata T, Benina M, Staykov N, Balazadeh S, Walther D, Fernie AR, Mueller-Roeber B, Hille J, Gechev TS. A novel seed plants gene regulates oxidative stress tolerance in Arabidopsis thaliana. Cellular and Molecular Life Sciences. 2019 Jun 27;77(4):705–18. doi: 10.1007/s00018-019-03202-5.
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