Schmink Jason R, Holcomb Jennifer L, Leadbeater Nicholas E
Department of Chemistry, University of Connecticut, 55 North Eagleville Road, Storrs, CT 06269-3060, USA.
Chemistry. 2008;14(32):9943-50. doi: 10.1002/chem.200801158.
Raman spectroscopy has been used as an in situ tool to obtain kinetic data for an organic transformation. The model reaction studied was the synthesis of 3-acetylcoumarin from the condensation between salicylaldehyde and ethyl acetoacetate with piperidine as a catalyst. The study shows that precise kinetic data can be obtained quickly and reproducibly, allowing for the facile determination of both overall reaction order and reaction order with respect to each component of the reaction. Additionally, Arrhenius parameters such as activation energy for a reaction can be readily obtained. In conjunction with computational modeling, this data-rich analysis technique also allows for in-depth probing of mechanistic aspects of reactions. Microwave heating proves to be an ideal tool for aiding in kinetic studies. It offers reproducible noncontact heating as well as precise temperature monitoring and data recording.
拉曼光谱已被用作一种原位工具,以获取有机转化的动力学数据。所研究的模型反应是在哌啶作为催化剂的情况下,由水杨醛和乙酰乙酸乙酯缩合合成3-乙酰香豆素。研究表明,可以快速且可重复地获得精确的动力学数据,从而便于确定总反应级数以及相对于反应各组分的反应级数。此外,还可以轻松获得诸如反应活化能等阿仑尼乌斯参数。结合计算建模,这种数据丰富的分析技术还能够深入探究反应的机理方面。事实证明,微波加热是辅助动力学研究的理想工具。它提供可重复的非接触式加热以及精确的温度监测和数据记录。