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Real-Time Monitoring of the Catalytic Oxidation of Alcohols to Aldehydes and Ketones on Resin Support by Single-Bead Fourier Transform Infrared Microspectroscopy

机译:实时监测醇在树脂载体上的醇催化氧化为醛和酮的单微珠傅里叶变换红外显微技术

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摘要

Catalytic oxidations of primary, benzylic, and secondary alcohols to aldehydes and ketone using tetra-n-propylammonium perruthenate (TPAP) were carried out on resin supports for the first time. The reaction time course, percent conversion, and influence of catalyst amount have been determined by analyzing IR spectra taken directly on a single resin bead in real time. Using 0.2 equiv of TPAP, a 92-97% conversion of alcohol to aldehyde or ketone has been achieved in 0.7-4 h based on the rates (rate constants (1.9 x 10~(-4))-(2.5 x 10~(-3)) s~(-1)) of disappearance and appearance of IR bands characteristic for alcohol, aldehyde, and ketone. The rapid adaptation of this oxidation method for solid-phase synthesis demonstrates that single-bead FTIR microspectroscopy is a powerful method for facilitating the time-consuming reaction optimization stage of combinatorial chemistry.
机译:首次在树脂载体上使用四正丙基过钌酸铵(TPAP)将伯醇,苄醇和仲醇催化氧化为醛和酮。通过实时分析直接在单个树脂珠上拍摄的红外光谱,可以确定反应时间,转化率和催化剂用量的影响。使用0.2当量的TPAP,在0.7-4小时内,基于速率(速率常数(1.9 x 10〜(-4))-(2.5 x 10〜( -3))s〜(-1))消失,并出现醇,醛和酮的IR波段特征。这种氧化方法对固相合成的快速适应证明,单珠FTIR显微技术是促进组合化学耗时的反应优化阶段的有力方法。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |1996年第25期|p.8765-8770|共6页
  • 作者单位

    Department of Central Technologies and Combinatorial Chemistry Group, Sandoz Research Institute, Sandoz Pharmaceuticals Corporation, 59 Route 10, East Hanover, New Jersey 07936-1080;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

  • 入库时间 2022-08-18 00:03:47

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