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首页> 外文期刊>Synthesis: International Journal of Methods in Synthetic Organic Chemistry >Tetrafluoroboric Acid Adsorbed on Silica Gel as a Reusable Heterogeneous Dual-Purpose Catalyst for Conversion of Aldehydes/Ketones into Acetals/Ketals and Back Again
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Tetrafluoroboric Acid Adsorbed on Silica Gel as a Reusable Heterogeneous Dual-Purpose Catalyst for Conversion of Aldehydes/Ketones into Acetals/Ketals and Back Again

机译:四氟硼酸吸附在硅胶上,作为可重复使用的均相双用途催化剂,用于将醛/酮转化为缩醛/酮并再次转化

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Aldehydes and ketones can be protected as acetals and ketals by treatment with trimethyl orthoformate (TMOF) or triethyl orthoformate (TEOF) under the catalytic influence of tetrafluoroboric acid adsorbed on silica gel (HBF4-SiO2). In the case of aldehydes or ketones with highly electrophilic carbonyl group, the reactions are carried out under solvent-free conditions. Aryl alkyl ketones, aryl styryl ketones, aldehydes with weakly electrophilic carbonyl groups, and aldehydes with substituents that can coordinate with the catalyst require the presence of the corresponding alcohol as solvent. For substrates that can be converted into acetals under neat conditions, the acetal formation takes place at a faster rate when the alcohol is used as the solvent. The catalyst can be recovered and reused/recycled four times (after reactivation after each use) without any significant decrease in its catalytic efficiency. The parent aldehydes/ketones are regenerated from the corresponding acetals/-ketals in high yields by the treatment with water-alcohol in the presence of HBF4-SiO2 at room temperature for short times. Excellent selectivity was observed during inter- and intramolecular competition studies involving carbonyl substrates with varying electronic and steric environments. Selective acetal formation of benzaldehyde takes place in the presence of 4-(dimethylamino)benzaldehyde, thiophene-2-carboxaldehyde, 1-naphthaldehyde, 9-anthraldehyde, or acetophenone, but 3-nitrobenzaldehyde undergoes selective acetal formation in preference to benzaldehyde. In the case of 4-acetylbenzaldehyde, exclusive acetal formation of the aldehyde carbonyl group occurs.
机译:在硅胶上吸附的四氟硼酸(HBF4-SiO2)催化作用下,通过用原甲酸三甲酯(TMOF)或原甲酸三乙酯(TEOF)处理,可以将醛和酮保护为缩醛和缩酮。对于具有高度亲电羰基的醛或酮,反应在无溶剂条件下进行。芳基烷基酮,芳基苯乙烯基酮,具有弱亲电羰基的醛和具有可与催化剂配位的取代基的醛需要存在相应的醇作为溶剂。对于可以在纯净条件下转化为缩醛的底物,当将醇用作溶剂时,缩醛的形成速度会更快。催化剂可以回收并重复使用四次(每次使用后重新活化后),而催化效率没有明显降低。通过在HBF4-SiO2存在下于室温短时间用水-醇处理,可以从相应的缩醛/缩酮中高产率地再生母体醛/酮。在分子间和分子内竞争研究中观察到极好的选择性,该研究涉及具有不同电子和空间环境的羰基底物。在4-(二甲基氨基)苯甲醛,噻吩-2-甲醛,1-萘醛,9-乙醛或苯乙酮的存在下,苯甲醛选择性缩醛形成,但3-硝基苯甲醛优先于苯甲醛发生选择性缩醛形成。在4-乙酰基苯甲醛的情况下,发生醛羰基的独家缩醛形成。

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