CAS: 2050-66-0; 1,2-Bis(4-Chloro-2-Nitrophenyl)Disulfane

该化合物是一种有机脱硫化合物,其特点是与一个苯环相连的氯和硝基功能组,该化合物主要用于化学合成和研究应用,其脱硫桥和电子提取替代成分使它成为建造更复杂的分子的宝贵中间体,在受控条件下,其稳定性允许在交叉反应和红氧化反应中进行精确的反作用力.氯和硝基化合物的存在增强了其在电子生物替代工艺中的效用,在合成路径中提供了选择性.对于实验室使用来说,它需要根据标准的安全议定书进行处理,因为它具有潜在的再活动性.

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CAS号89-61-2 2,5-二氯硝基苯 | CAS号4153-06-4 (4-chloro-2-nit... | CAS号36776-27-9 4-chloro-2-nitr... | CAS号2719-66-6 4-chloro-2-nitr... | CAS号10148-20-6 2-Nitro-4-chlor... | CAS号64-17-5 乙醇 | CAS号7803-49-8 羟胺 | CAS号67-66-3 氯仿 | CAS号144505-71-5 4-chloro-1-(4-c... | CAS号4533-96-4 4-氯-2-硝基苯磺酰氯 | CAS号29124-55-8 2-氨基-4-氯苯基 二硫化物 | CAS号1006-99-1 5-氯-2-甲基苯并噻唑 | CAS号1004-00-8 2-氨基-4-氯苯硫醇 | CAS号3479-10-5 1-氨基-3-氯苯-6-磺酸 | CAS号6803-43-6 Thi°Cyanic acid... | CAS号823801-83-8 2-(4-chloro-2-n... | CAS号92161-46-1 5-氯-2-(4-甲氧基苯基)... | CAS号952-16-9 5-氯-2-苯基苯并[d]噻唑

合成工艺路线路线简述

    2,5-二氯硝基苯 以 乙醇 用作溶剂,以64.1%的收率获得2,2-二硝基-4,4-二氯二苯二硫
    参考文献:Dihydrobenz Thiazine Derivative And Microorganism Control Agent
    标题:Dihydrobenz Thiazine Derivative And Microorganism Control Agent
    摘要:一种由以下化学式表示的化合物:##str1## 其中r.Sup.1和r.Sup.2分别表示氢原子,卤素原子,硝基基团,较低的烷基基团或三氟甲基基团;R.Sup.3表示氢原子,较低的烷基基团,苯基或较低的烷氧羰基基团;R.Sup.4和r.Sup.5分别表示氢原子或较低的烷基基团;R.Sup.6表示卤素原子;X表示氧原子或硫原子,以及一种微生物控制剂,包括上述化合物作为活性成分.

    海关参考信息

    专利信息


    专利号:US-3759935-A
    优先权日:1969-11-03
    标题 :Azoles method for the preparation of 2-alkyl substituted thiazoles and selen
    发明人:DE CAT A; MANSSENS L
    权利人:AGFA GEVAERT NV
    摘要:WHEREIN: Alk stands for C1-C5 alkyl for example methyl and ethyl, X stands for sulphur or selenium, Y stands for nitro or amino, Z1 stands for the atoms necessary to complete a benzene or naphthalene ring including a substituted benzene or naphthalene ring for instance substituted by alkyl including substituted alkyl for example methyl, ethyl, trifluoromethyl, acyloxymethyl, and hydroxymethyl, alkenyl for example allyl, aryl including substituted aryl, halogen such as chlorine, alkyloxy, alkylthio, alkylsulphonyl, haloalkyloxy, haloalkylthio, haloalkylsulphonyl, carboxy, sulpho, amino, (di)alkylamino, acylamino, nitro, alkoxycarbonyl, etc., and Z2 stands for the atoms necessary to complete a benzene or naphthalene ring optIonally carrying substituents, which are either identical to the substituents present in Z1 or are derived forms thereof converted under the reaction conditions of the invention such as amino where Z1 carries nitro, acetyloxymethyl where Z1 carries hydroxymethyl, propyl where Z1 carries allyl, etc. Under the reaction conditions of the invention it would be possible to prepare the benzothiozoles starting from 2nitrothiophenols instead of using bis(2nitrophenyl)disulphides; however, 2-nitrothiophenols as compared with bis(2-nitrophenyl)-disulphides disulphides are difficult to prepare. The method of the present invention comprises more especially the steps of admixing an aromatic disulphide or diselenide carrying in the 2-positions relative to the disulphide or diselenide group nitro groups or amino groups with an aliphatic carboxylic anhydride and a catalytic amount of a rhenium sulphide, charging the reaction vessel with a sufficient hydrogen pressure, heating the reaction mixture to a temperature at which hydrogen is readily absorbed until absorption of hydrogen ceases, cooling the reaction mixture to a temperature below the boiling temperature of the aliphatic carboxylic acid formed, filtering off the rhenium sulphide catalyst and isolating the 2-alkyl heterocyclic base formed from the filtrate by any suitable means e.g., by concentrating the filtrate by evaporation if necessary under rpduced pressure and filtering off the precipitate formed or distilling the residue. The rhenium sulphide catalyst is generally used in amounts comprised between 0.25 g and 10 g, preferably from 1 g to 5 g per mole of disulphide or diselenide compound. The amount of aliphatic carboxylic anhydride used may vary between wide limits. The most effective amount can easily be determined by some simple tests. The required minimum theoretical amount depends on whether there is stated from a 2,2''-dinitro aromatic disulphide or diselenide or from a 2,2''-diaminoaromatic disulphide or diselenide and from the optional presence of further nitro and amino groups. The minimum amount of aliphatic carboxylic anhydride is 3 moles of anhydride per nitro group present and 2 moles of anhydride per amino group present. Solubility considerations may necessitate the use of larger amounts and also supplemental amounts may be required to convert other groups present in the starting material. Indeed, the 2,2''-dinitro (or 2,2''-diamino)phenyl (or naphthyl) disulphide or diselenide might comprise in addition to the 2,2''dinitro (or diamino) groups, groups known to those skilled in the art of preparative organic chemistry to undergo alteration under the reaction conditions of the method of the invention either by reaction with the carboxylic anhydride used or by being itself hydrogenated so that the resulting thiazole or selenazole compounds comprise in the fused-on aromatic ring substituents of a nature different from those of the starting materials. For instance when the 2,2''-dinitro (or 2,2''-diamino)phenyl (or naphthyl) disulphide or diselenide comprises further nitro or amino groups, the heterocyclic base formed will carry an acyl amino group, by reaction of the amino or reduced nitro group with the aliphatic acarboxylic anhydride; as known by those skilled in the art of preparative organic chemistry the acyl amino group can be converted into amino by boiling with hydrochloric acid. In the same way, substituents in the starting products carrying hydroxyl groups such as hydroxymethyl, will also react with the carboxylic anhydride to form ester groups; as is illustrated hereinafter it is possible to hydrolyse the ester group formed by treating the reaction mixture afterwards with hydrochloric acid so that the hydroxyl group is formed again. The exact working conditions of the method oF the invention are of course dependent on the nature of the starting material used and the optimum combination of temperature, pressure, amount of catalyst used and the reaction time. A hydrogen pressure of 1,000 to 1,500 psi generally suffices to obtain fast hydrogenation rates at temperatures comprised between 100 and 175* C. In many cases the hydrogen is readily absorbed at temperatures of 130140* C. Once the absorption of hydrogen ceases, the reaction mixture is cooled below the boiling temperature of the lower aliphatic carboxylic acid formed. The rhenium sulphide of use according to the present invention can be prepared by methods well known to those skilled in the art and described in literature. For instance rhenium(VII) sulphide can be prepared as described in J1.Am.Chem.Soc. 76, 151923(1954). The following preparations illustrate the method of the present invention. A method of preparing 2-alkylthiazoles or 2-alkylselenazoles is described wherein an aromatic disulphide or diselenide having amino groups or nitro groups in the 2-positions relative to the disulphide or diselenide group is catalytically hydrogenated using a rhenium sulphide as catalyst in the presence of an aliphatic carboxylic anhydride. The method is a one-step synthesis and high yields of 2-alkyl thiazoles or selenazoles are obtained having a high degree of purity. The present invention relates to a new method for the preparation of a 2-alkyl substituted thiazoles or selenazoles with fused-on aromatic group. As is known 2-alkyl-benzothiazoles, 2-alkyl-naphthothiazoles, 2alkyl-benzoselenazoles and 2-alkylnaphthoselenazoles are important heterocyclic bases for use in the preparation of methine dyes (see e.g., F.M. Hamer ''''The Cyanine Dyes and related compounds'''' Interscience Publishers 1964, New-York/London, and P.Glafkides, Photographic Chemistry, Vol. II, Chapter XXXVI, Fountain press, London), which are used amongst others as spectrally sensitizing agents for photosensitive systems such as photographic silver halide material and electrophotographic material. It has now been that 2-alkyl substituted thiazoles or selenazoles having a fused-on 6-carbon mononuclear or 10-carbon dinuclear aromatic ring can be prepared by catalytic hydrogenation under pressure of an aromatic disulphide or diselenide comprising in the 2-positions relative to the disulphide or diselenide group, amino groups or nitro groups, said hydrogenation taking place in the presence of an aliphatic carboxylic anhydride using as catalyst a rhenium sulphide, more particularly rhenium(VII)sulphide. The said aliphatic carboxylic anhydride may serve also as the reaction medium. The general one step synthesis of 2-alkyl substituted thiazoles or selenazoles having a fused-on 6-carbon mononulcear or 10carbon dinuclear aromatic ring according to the present invention is time-saving and gives high yields with a high degree of purity. Moreover, the method of the invention can be carried out very easily, even on an industrial scale without giving rise to technological difficulties. The rhenium sulphide used according to the present invention is not poisoned by the sulphur-containing starting products used in the method of the invention and cause no fission of the carbonsulphur bond, while being resistant to carboxylic anhydrides. The method of the invention can be represented by the following reaction scheme:
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    合成参考文献


    摘要:Schafer, E. W., Jr., W. A. Bowles Jr., and J. Hurlbut. 1983. The acute oral toxicity and repellency and hazard potential of 998 chemicals to one or more species of wild and domestic birds. Archives of Environmental Contamination and Toxicology 12:355-382.
    摘要:Schafer, E. W., Jr., and W. A. Bowles Jr. 2004. Toxicity, Repellency of Phytotoxicity of 979 Chemicals to Birds, Mammals and Plants. Research Report No. 04-01. National Wildlife Research Center, Fort Collins, Colorado. 118 pp. https://www.aphis.usda.gov/ws/nwrc/chem-effects-db/U_schafer041_2004.pdf
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