使用 cinchona 类化合物,对 ketimines 进行催化式 enantioselective 水解化
Shuichi Nakamura1, Masashi Hayashi, Yuichi Hiramatsu
1Department of Frontier Materials, Graduate School of Engineering, Nagoya Institute of Technology, Gokiso, Showa-ku, Nagoya 466-8555, Japan. snakamur@nitech.ac.jp
的α-氨基酸盐是通过有机催化酶选择性酸化基因胺的合成的. 这种方法使用 cinchona 类化合物,并允许访问具有高选择性的两个反体,即使在低催化剂负载下.
科学领域:
- 有机化学 有机化学
- 不对称的催化剂.
- 有机化学化学 有机化学
背景情况:
- 阿尔法氨基酸盐是药物化学和材料科学中重要的结构动图.
- 开发高效和enantioselective合成方法的α-氨基酸盐是有机合成的一个关键挑战.
- 辛科纳类化合物是各种不对称转换的成熟有机催化剂.
研究的目的:
- 为了开发一个有机催化剂的enantioselective ketimines.hydrophosphonylation.
- 探索使用辛科纳类化合物作为这种转变的催化剂.
- 为了在合成α-氨基酸盐中达到高的反选择性和产量.
主要方法:
- 该反应涉及使用酸盐源的胺的化化.
- 辛科纳类化合物,如氨酸或氨酸衍生物,被用作有机催化剂.
- 在催化剂的存在下,碳酸 (Na2CO3) 被用作基.
- 伪抗原体辛纳类化合物被用来获取该产品的两种抗原体.
主要成果:
- 基因胺的有机催化酶选择性水解化过程具有很高的选择性.
- 通过选择适当的伪抗原体辛纳类化合物,成功制备了α-氨基酸盐的两个反体.
- 辛科纳类化合物的催化剂负荷可以降低到0.5mol%,而不会显著地损失酶选择性,从而显示出高效率.
结论:
- 丁香类类化合物催化基胺的酶选择性水化是一种可行的和有效的方法,用于合成奇拉性α-氨基酸盐.
- 该方法提供了一条实用的途径,以获得有价值的酸盐化合物的两个反体.
- 所需的低催化剂负载使得这种方法对大规模合成具有潜在吸引力.
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