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Dialkylaminodifluorosulfinium salts: XtalFluor-E and XtalFluor-M

机译:二烷基氨基二氟s盐:XtalFluor-E和XtalFluor-M

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(A) Failure of Hydrocinnamyl Alcohol with XtalFluor-M: The reaction of hydrocinnamyl alcohol with 2 or 1 in acetonitrile provided an intractable mixture. For this reaction to proceed, the addition of exogenous sources of fluoride, such as Et3N·3HF or Et3N·2HF, was necessary (B) Halogenation of Alcohols with XtalFluor Reagents: Reaction of primary, secondary and tertiary alcohols with 1 using Et3N·3HF as a promoter gave the fluorinated nucleophilic substitution products. The addition order was a key parameter in this reaction. To obtain good selectivity and stereochemical integrity, 1,8-diazabicycloundec-7-ene (DBU) had to be used together with the fluorination agents. 5 A mixture of fluorinated bridged biphenyl systems has been obtained from 3-hydroxyspirodienones by means of a XtalFluor-E-promoted rearrangement. When compound 2 was used instead of compound 1, substrate decomposition was observed. 6 Chlorination, bromination and iodination reaction of primary alcohols in good yield has been described using a combination of tetraethylammonium halide and XtalFluor- E. (C) Geminal Difluorination of Carbonyl Groups: L'Heureux et al. have reported the geminal difluorination of carbonyl groups of aldehydes and ketones. They demonstrated that compound 1 alone was incapable of performing such transformations.5,8 To obtain geminal difluorinated products, it was necessary to use a promoter and increase the temperature (e.g., CH 2Cl2 or 1,2-dichloroethane at reflux). (D) Fluorination Processes on Carbohydrate Derivatives: Fuchs and co-workers have recently reported the preparation of a fluorodisaccharide in excellent yield without side products using XtalFluor-E, thus eliminating the need for purification. 9 The effective preparation of glycosyl fluorides from thio-, seleno-, telluro- and glycosyl sulfoxides has been performed in 30 minutes by Williams and co-workers with evidence that fluoride is delivered by the tetrafluoroborate counterion (E) Enantioselective Ring Expansion of Prolinols: Direct ring expansion of N-alkyl prolinols to produce the corresponding 3-azidopiperidines in good and excellent regio-, diastereo- and enantioselectivity was achieved by using XtalFluor-E. Formation of an aziridinium intermediate which reacts with a nucleophile such as tetrabutylammonium azide (Bu4NN3) is proposed (F) Cyclodehydration Agents: Paquin and co-workers have recently reported 12 the use of 1 as a practical cyclodehydration agent to obtain 1,3,4-oxadiazoles among other nitrogen-containing heterocycles.13 The addition of acetic acid improved the yield and selectivity of the oxadiazole formation. (G) Activating Agents for Carboxylic Acids: Compound 1 has proved to be an efficient coupling agent for the synthesis of amides by activation of the carboxylic acid. 14 Moreover, this reaction is carried out with primary and secondary amines in good yield without epimerization or racemization
机译:(A)氢化肉桂醇与XtalFluor-M的失效:氢化肉桂醇与2或1在乙腈中的反应提供了难处理的混合物。为了使该反应继续进行,必须添加外源氟化物,例如Et3N·3HF或Et3N·2HF(B)用XtalFluor试剂卤化醇:使用Et3N·3HF将伯醇,仲醇和叔醇与1反应作为促进剂,得到氟化的亲核取代产物。添加顺序是该反应的关键参数。为了获得良好的选择性和立体化学完整性,必须将1,8-二氮杂双环十一碳烯7-烯(DBU)与氟化剂一起使用。 5通过XtalFluor-E促进的重排,从3-羟基螺二烯酮中获得了氟化的桥联联苯系统的混合物。当使用化合物2代替化合物1时,观察到底物分解。 6已经描述了使用四乙基卤化铵和XtalFluor-E的组合以高产率进行伯醇的氯化,溴化和碘化反应。(C)羰基的二元氟化:L'Heureux等。已经报道了醛和酮的羰基的双氟化二氟。他们证明单独的化合物1不能进行这种转化。5,8为了获得双氟化的双产物,必须使用促进剂并提高温度(例如,CH 2Cl2或回流下的1,2-二氯乙烷)。 (D)碳水化合物衍生物的氟化过程:Fuchs及其同事最近报道,使用XtalFluor-E无需副产物即可以优异的产率制备氟代二糖,从而消除了纯化的需要。 9 Williams和他的同事在30分钟内有效地从硫代,硒代,碲基和糖基亚砜有效制备了糖基氟化物,并证明四氟硼酸抗衡离子(E)脯氨醇的对映选择性环膨胀可释放氟化物:使用XtalFluor-E可实现N-烷基脯氨醇的直接环扩环,从而产生具有良好和出色的区域,非对映异构和对映选择性的相应3-叠氮哌啶。建议形成与亲核试剂如叠氮化四丁基铵(Bu4NN3)反应的叠氮鎓中间体(F)环脱水剂:Paquin和同事最近报道12使用1作为一种实用的环脱水剂可得到1,3,4 -恶二唑等含氮杂环化合物。13添加乙酸提高了恶二唑形成的收率和选择性。 (G)羧酸的活化剂:化合物1已证明是通过羧酸的活化合成酰胺的有效偶联剂。 14此外,该反应是用伯胺和仲胺进行的,产率高,不会发生差向异构或外消旋

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