CAS: 19501-58-7; 4-Methoxyphenylhydrazine Hydrochloride

该化合物是一种多用途有机化合物,主要用作合成药品,农用化学品和染料的关键中间体,其氢子碱能参与凝结反应,例如形成氢氮或像Indoles那样的三环结构. 甲氧基组会增加溶性并影响电子特性,使其在细微化学应用中具有价值. 盐质形式与自由基相比,可以提高稳定性和处理能力. 这种试剂在培养生物活性化合物,包括MAO抑制剂和其他CNS目标分子方面特别有用. 它的一贯纯度和再活性使它成为研究和工业规模合成的可靠选择.

结构式图片

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ECHA物质C&L通报REACH预注册

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CAS号4346-59-2 4-methoxybenzen... | CAS号104-94-9 对甲氧基苯胺 | CAS号459-64-3 四氟硼酸-4-甲氧基重氮苯正酯 | CAS号53-86-1 吲哚美辛 | CAS号35715-67-4 1-(4-甲氧基苯基)-1H-吡唑 | CAS号91331-86-1 1-(4-甲氧基苯基)-3-甲... | CAS号41382-23-4 5-甲氧基-2,3,3-三甲基吲哚啉 | CAS号42545-43-7 2-(4-甲氧苯基)噻吩 | CAS号19802-60-9 8-methoxy-6,11-... | CAS号20955-94-6 1-(4-氯苄基)-1-(4-... | CAS号218632-10-1 1-(4-甲氧基苯基)-5-甲... | CAS号218631-48-2 1-(4-METHOXYPHE...

合成工艺路线路线简述

  • 合成目标产物 4-Methoxyphenylhydrazine Hydrochloride 主要起始原料 P-Anisidine
  • (文献来源)合成步骤主要原料 P-Anisidine
甲氧苯胺置于盐酸,Tin(Ll) Chloride,Sodium Nitrite体系中,化学反应生成4-甲氧基苯肼盐酸盐
参考文献:1,3-二氢-3,3-二甲基-2 H-吲哚-2-酮衍生物的合成可能是非甾体类强心药
标题:1,3-二氢-3,3-二甲基-2 H-吲哚-2-酮衍生物的合成可能是非甾体类强心药
摘要:合成了新的取代的1,3-二氢-3,3-二甲基-2 H-吲哚-2-酮衍生物19-29和34-43,并检查了它们在离体狗心室组织中的肌力活性.其中,化合物26(2-(2,3-二甲氧基苄氨基)-N-(3,3,7-三甲基-2-氧代-2,3-二氢-1 H-吲哚-5-基)乙酰胺)显示有力的活动.
Doi:10.1002/jhet.5570320101

海关参考信息

专利信息


专利号:US-11040938-B2
优先权日:2016-07-27
标 题 :Continuous flow process for the synthesis of phenylhydrazine salts and substituted phenylhydrazine salts
发明人:MA BING; PAN SHUAI
权利人:SHANGHAI HYBRID—CHEM TECH; SHANGHAI HYBRID CHEM TECH
摘要:The present invention provided a continuous flow process for the synthesis of phenylhydrazine salts and substituted phenylhydrazine salts. Diazotization, reduction, acidic hydrolysis and salifying with acids are innovatively integrated together. Using acidic liquids of aniline or substituted aniline, diazotization reagents, reductants and acids as raw materials, phenylhydrazine derivative salts is obtained through the synthesis process, which is a three-step continuous tandem reaction including diazotization, reduction, acidic hydrolysis and salifying. The described synthesis process is a kind of integrated solutions, which is carried out in an integrated reactor. The feed inlets of the integrated reactor are continuously filled with raw materials. In the integrated reactor, diazotization, reduction, acidic hydrolysis and salifying are carried out continuously and orderly, and phenylhydrazine salts or substituted phenylhydrazine salts is obtained in the outlet of the integrated reactor without interruption. The total reaction time is no more than 20 min.

专利号:US-8283476-B2
优先权日:2007-06-26
标 题:Transition metal catalyzed synthesis of 2H-indazoles
发明人:HALLAND NIS; NAZARE MARC; LINDENSCHMIDT ANDREAS; ALONSO JORGE; RKYEK OMAR; URMANN MATTHIAS
权利人:HALLAND NIS; NAZARE MARC; LINDENSCHMIDT ANDREAS; ALONSO JORGE; RKYEK OMAR; URMANN MATTHIAS; SANOFI SA
摘要:The present invention relates to a process for the regioselective synthesis of compounds of the formula I, n nwherein R0; R1; R2; R3; R4; R5; A1; A2; A3; A4, Q and J have the meanings indicated in the claims. The present invention provides a direct transition metal catalyzed process to a wide variety of multifunctional 2H-indazoles or 2H-azaindazoles of the formula (I) from 2-halo-phenylacetylenes or (2-sulfonato)phenylacetylenes and monosubstituted hydrazines.

专利号:US-4898952-A
优先权日:1987-05-29
标 题 :Regioselective synthesis of a 1,5-disubstituted pyrazole
发明人:MURRAY WILLIAM V; WACHTER MICHAEL P
权利人:ORTHO PHARMA CORP
摘要:A highly regioselective synthesis of pyrazoles from a mono-substituted hydrazine and a beta -dicarbonyl compound wherein a carboxylic acid moiety is present on the substituent attached to one of the carbonyls. For example, compounds of the formula (I) are formed in marked preference to isomers of formula (IV): (I) (IV)

专利号:US-5714127-A
优先权日:1992-10-08
标题 :System for multiple simultaneous synthesis
发明人:DEWITT SHEILA H H; KIELY JOHN S; PAVIA MICHAEL R; SCHROEDER MEL C; STANKOVIC CHARLES J
权利人:WARNER LAMBERT CO
摘要:A system for the multiple, simultaneous synthesis of compounds preferably uses a reaction apparatus comprising a reservoir rack having a plurality of reaction wells, a plurality of reaction tubes, usually gas dispersion tubes, having filters on their lower ends, a holder block, having a plurality of apertures, and a manifold, which has ports to allow introduction/maintenance of a controlled environment. The manifold top wall has a plurality of apertures in axial alignment with the reaction tubes and a gasket which allows penetration by a needle in order to dispense and aspirate materials from the reaction tubes. Sealing members, such as gaskets, are placed between the holder block, manifold and reservoir rack and the components are releasably fastened together. A robotic sample processor is used to automate the synthesis process using the reaction apparatus.

专利号:US-5702672-A
优先权日:1992-10-08
标 题 :Apparatus and method for multiple simultaneous synthesis
发明人:DEWITT SHEILA H H; KELL MICHAEL; PAVIA MICHAEL R; KIELY JOHN S; SCHROEDER MEL C; STANKOVIC CHARLES J; WARE STEVEN
权利人:WARNER LAMBERT CO
摘要:An apparatus for multiple, simultaneous synthesis of compounds which consists of: a reservoir block having a plurality of wells; a plurality of reaction tubes, usually gas dispersion tubes, having filters on their lower ends; a holder block, having a plurality of apertures; and a manifold, which may have ports to allow introduction/maintenance of a controlled environment. The manifold top wall has apertures and a detachable plate with identical apertures. The apparatus is constructed from materials which will accommodate heating, cooling, agitation, or corrosive reagents. Gaskets are placed between the components. Rods or clamps are provided for fastening the components together. Apparatus operation involves placing the filters on the lower ends of the reaction tubes in the reservoir block wells, and the upper ends passing through the holder block apertures and into the manifold.

专利号:US-5766556-A
优先权日:1992-10-08
标题:Apparatus and method for multiple simultaneous synthesis
发明人:DEWITT SHEILA HELEN HOBBS; KIELY JOHN STEVEN; PAVIA MICHAEL RAYMOND; SCHROEDER MEL CONRAD; STANKOVIC CHARLES JOHN
权利人:WARNER LAMBERT CO
摘要:An apparatus and method which provides a suitable location for multiple, simultaneous synthesis of compounds. The apparatus consists of: a reservoir block having a plurality of wells; a plurality of reaction tubes, usually gas dispersion tubes, having filters on their lower ends; a holder block, having a plurality of apertures; and a manifold, which may have ports to allow introduction/maintenance of a controlled environment. The manifold top wall has apertures and a detachable plate with identical apertures. The apparatus is constructed from materials which will accommodate heating, cooling, agitation, or corrosive reagents. Gaskets are placed between the components. Rods or clamps are provided for fastening the components together. Apparatus operation involves placing the filters on the lower ends of the reaction tubes in the reservoir block wells, and the upper ends passing through the holder block apertures and into the manifold. The apparatus provides in excess of 1 mg of each product with structural knowledge and control over each compound. The apparatus can be adapted to manual, semiautomatic or fully automatic performance. Using the apparatus a series of building blocks are covalently attached to a solid support. These building blocks are then modified by covalently adding additional different building blocks or chemically modifying some existing functionality until the penultimate structure is achieved. This is then cleaved from the solid support by another chemical reaction into the solution within the well yielding an array of newly synthesized individual compounds, which after postreaction modification, if necessary, are suitable for testing for activity.
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主要参考文献

[参考文献]: T Iwakawa, Et Al. Reaction Of 3-Acetonyl-5-Cyano-1,2,4-Thiadiazole With Phenylhydrazine Hydrochlorides: Indolization And Phenylpyrazolation. Chem Pharm Bull (Tokyo). 2000 Jan;48(1):160-2.

合成参考文献


摘要:Götzinger, A. C.; Müller, T. J. J., Science of Synthesis Knowledge Updates, (2017) 3, 46.
摘要:Silva, V. L. M.; Pinto, D. C. G. A.; Santos, C. M. M.; Rocha, D. H. A., Science of Synthesis Knowledge Updates, (2022) 3, 276.
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