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醛而非酮的缩醛发生意外的高化学选择性脱保护反应:三氟甲磺酸三乙硅酯-2,6-二甲基吡啶组合。

Unexpected highly chemoselective deprotection of the acetals from aldehydes and not ketones: TESOTf-2,6-lutidine combination.

作者信息

Fujioka Hiromichi, Sawama Yoshinari, Murata Nobutaka, Okitsu Takashi, Kubo Ozora, Matsuda Satoshi, Kita Yasuyuki

机构信息

Graduate School of Pharmaceutical Sciences, Osaka University, 1-6, Yamada-oka, Suita, Osaka 565-0871, Japan.

出版信息

J Am Chem Soc. 2004 Sep 29;126(38):11800-1. doi: 10.1021/ja046103p.

Abstract

Acetal functions are recognized as good protecting groups of carbonyl groups. Although many deprotecting methods of acetals to carbonyl functions have already been developed, there is no methodology which can deprotect acetals in the presence of ketals because the usual acidic or radical reactions occur more easily via the more stable cationic or radical intermediates from the ketals. On the other hand, this new method can proceed in a reverse manner to that described in previous reports. That is, the method can deprotect aliphatic acetals in the presence of ketals. The reaction condition is common for silylation, i.e., the TESOTf-2,6-lutidine combinations. Although the TMSOTf-2,6-lutidine combination can also deprotect acetals, it lacks chemoselectivity in deprotection of the acetals from aldehydes and ketones. The treatment of acetals with TESOTf and 2,6-lutidine in CH2Cl2 followed by a H2O workup gave the corresponding aldehydes. Of course, the compounds, which have both acetal and hydroxyl functions afforded the compounds obtained by the usual silylation of an alcohol and deprotection of an acetal without any problem. However, deprotection of the ketals from ketones was not observed during the conversion reaction of acetals from aldehydes. This chemoselectivity was confirmed in the reactions of the compounds that have the acetal and ketal in the same molecule. In both cases, the acetal functions were deprotected to give aldehydes with intact ketals. Furthermore, under the conditions described here, many functional groups such as methoxy, acetoxy, allyl alcohol, and silyloxy ether are intact. This method is very mild and available for many compounds.

摘要

缩醛官能团被认为是羰基的良好保护基团。尽管已经开发出许多将缩醛脱保护为羰基官能团的方法,但尚无能够在缩酮存在下使缩醛脱保护的方法,因为通常的酸性或自由基反应更容易通过缩酮产生的更稳定的阳离子或自由基中间体进行。另一方面,这种新方法可以以与先前报道相反的方式进行。也就是说,该方法可以在缩酮存在下使脂肪族缩醛脱保护。反应条件与硅烷化的条件相同,即TESOTf-2,6-二甲基吡啶组合。尽管TMSOTf-2,6-二甲基吡啶组合也可以使缩醛脱保护,但它在从醛和酮中脱保护缩醛时缺乏化学选择性。在二氯甲烷中用TESOTf和2,6-二甲基吡啶处理缩醛,然后进行水后处理,得到相应的醛。当然,同时具有缩醛和羟基官能团的化合物能够顺利得到通过醇的常规硅烷化和缩醛脱保护得到的化合物。然而,在醛的缩醛转化反应过程中未观察到酮的缩酮脱保护。这种化学选择性在同一分子中同时具有缩醛和缩酮的化合物的反应中得到了证实。在这两种情况下,缩醛官能团均被脱保护,得到缩酮完整的醛。此外,在此处所述的条件下,许多官能团如甲氧基、乙酰氧基、烯丙醇和硅烷氧基醚都是完整的。该方法非常温和,适用于许多化合物。

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