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在介电润湿数字微流控芯片装置中采用引擎-货物系统实现片上有机合成。

On-chip organic synthesis enabled using an engine-and-cargo system in an electrowetting-on-dielectric digital microfluidic device.

机构信息

Mechanical and Aerospace Engineering, The University of Texas at Arlington, USA.

出版信息

Lab Chip. 2019 Sep 10;19(18):3054-3064. doi: 10.1039/c9lc00428a.

Abstract

This paper presents a microfluidic chemical reaction using an electrowetting-on-dielectric (EWOD) digital microfluidic device. Despite a number of chemical/biological applications using EWOD digital microfluidic devices, their applications to organic reactions have been seriously limited because most of the common solvents used in synthetic organic chemistry are not compatible with EWOD devices. To address this unsolved issue, we first introduce a novel technique using an "engine-and-cargo" system that enables the use of non-movable fluids (e.g., organic solvents) on an EWOD device. With esterification as the model reaction, on-chip chemical reactions were successfully demonstrated. Conversion data obtained from on-chip reactions were used to characterize and optimize the reaction with regard to reaction kinetics, solvent screening, and catalyst loading. As the first step toward on-chip combinatorial synthesis, parallel esterification of three different alcohols was demonstrated. Results from this study clearly show that an EWOD digital microfluidic platform is a promising candidate for microscale chemical reactions.

摘要

本文提出了一种使用介电润湿(EWOD)数字微流控装置的微流化学反应。尽管已经有许多使用 EWOD 数字微流控设备的化学/生物学应用,但由于大多数在合成有机化学中使用的常见溶剂与 EWOD 设备不兼容,它们在有机反应中的应用受到了严重限制。为了解决这个未解决的问题,我们首先介绍了一种使用“引擎和货物”系统的新技术,该技术允许在 EWOD 设备上使用不可移动的流体(例如有机溶剂)。以酯化反应作为模型反应,成功地在芯片上进行了化学反应。从芯片上的反应中获得的转化率数据用于对反应动力学、溶剂筛选和催化剂负载进行特征描述和优化。作为芯片上组合合成的第一步,还展示了三种不同醇的平行酯化反应。本研究的结果清楚地表明,EWOD 数字微流控平台是微尺度化学反应的有前途的候选者。

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