首页> 外文期刊>The Journal of Organic Chemistry >Temperature-controlled regioselectivity in the reductive cleavage of p-methoxybenzylidene acetals
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Temperature-controlled regioselectivity in the reductive cleavage of p-methoxybenzylidene acetals

机译:对甲氧基亚苄基乙缩醛还原裂解中的温度控制区域选择性

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摘要

The regioselective ring opening of pyranosidic 4,6-p-methoxybenzylidene acetals with BH3/Bu2BOTf in THF can be tuned by adjusting the reaction temperature and reagent concentrations. Reductive cleavage at 0 degreesC resulted in the exclusive formation of 4-O-p-methoxybenzyl (PMB) ethers, whereas reaction at -78 degreesC produced 6-O-PMB ethers in high yields. The latter condition was observed to be compatible with a variety of acid-sensitive functional groups, including allyl and enol ethers. The presence of water does not interfere with reductive ring opening and may contribute toward in situ generation of H+ as a catalyst for 6-O-PMB ether formation. Reductive cleavage under rigorously aprotic conditions is greatly decelerated, and yields only the 4-O-PMB ether. The temperature-dependent reductive cleavage of the 4,6-acetal can be described in terms of kinetic versus thermodynamic control: Lewis-acid coordination of the more accessible O-6 is favored at higher temperatures, whereas protonation of the more basic but sterically encumbered O-4 predominates at low temperatures.
机译:可以通过调节反应温度和试剂浓度来调节吡喃硅酸的4,6-对甲氧基亚苄基乙缩醛与BH3 / Bu2BOTf在THF中的区域选择性开环。在0℃下的还原裂解导致4-O-对甲氧基苄基(PMB)醚的排他性形成,而在-78℃下的反应以高产率产生6-O-PMB醚。观察到后一种情况与各种酸敏感的官能团相容,包括烯丙基和烯醇醚。水的存在不会干扰还原性开环,并且可能有助于原位生成H +作为6-O-PMB醚形成的催化剂。在严格的非质子条件下,还原裂解速度大大降低,仅产生4-O-PMB醚。 4,6-乙缩醛的温度依赖性还原裂解可通过动力学与热力学控制来描述:在较高温度下,更易接近的O-6的路易斯酸配位是有利的,而更碱性但空间上受阻的质子化O-4在低温下占主导地位。

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