Lai Yin-Hung, Sathyamoorthi Shyam, Bain Ryan M, Zare Richard N
Department of Chemistry, Stanford University, Stanford, CA, 94305, USA.
J Am Soc Mass Spectrom. 2018 May;29(5):1036-1043. doi: 10.1007/s13361-018-1908-z. Epub 2018 Mar 22.
The nucleophilic opening of an epoxide is a classic organic reaction that has widespread utility in both academic and industrial applications. We have studied the reaction of limonene oxide with morpholine to form 1-methyl-2-morpholino-4-(prop-1-en-2-yl) cyclohexan-1-ol in bulk solution and in electrosprayed microdroplets with a 1:1 v/v water/methanol solvent system. We find that even after 90 min at room temperature, there is no product detected by nuclear magnetic resonance spectroscopy in bulk solution whereas in room-temperature microdroplets (2-3 μm in diameter), the yield is already 0.5% in a flight time of 1 ms as observed by mass spectrometry. This constitutes a rate acceleration of ~ 10 in the microdroplet environment, if we assume that as much as 5% of product is formed in bulk after 90 min of reaction time. We examine how the reaction rate depends on droplet size, solvent composition, sheath gas pressure, and applied voltage. These factors profoundly influence the extent of reaction. This dramatic acceleration is not limited to just one system. We have also found that the nucleophilic opening of cis-stilbene oxide by morpholine is similarly accelerated. Such large acceleration factors in reaction rates suggest the use of microdroplets for ring opening of epoxides in other systems, which may have practical significance if such a procedure could be scaled. Graphical Abstract This graphical image is distorted. It is too extended in the vertical direction. Please fix.ᅟ.
环氧化合物的亲核开环反应是一种经典的有机反应,在学术和工业应用中都有广泛的用途。我们研究了氧化柠檬烯与吗啉在本体溶液以及在1:1 v/v水/甲醇溶剂体系的电喷雾微滴中反应生成1-甲基-2-吗啉基-4-(1-丙烯-2-基)环己醇的反应。我们发现,即使在室温下反应90分钟后,本体溶液中通过核磁共振光谱也未检测到产物,而在室温微滴(直径2 - 3μm)中,飞行时间为1毫秒时通过质谱观察到产率已达0.5%。如果假设反应90分钟后本体中最多形成5%的产物,那么在微滴环境中这构成了约10倍的速率加速。我们研究了反应速率如何依赖于液滴大小、溶剂组成、鞘气压力和施加电压。这些因素深刻地影响反应程度。这种显著的加速并不局限于一个体系。我们还发现吗啉对顺式氧化芪的亲核开环反应同样加速。反应速率如此大的加速因子表明在其他体系中使用微滴进行环氧化合物的开环反应,若该过程能够扩大规模可能具有实际意义。图形摘要 此图形图像变形。它在垂直方向上延伸过度。请修正。ᅟ