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Laser assisted microfluidic membrane evaporator for sample crystallization separation

机译:激光辅助微流体膜蒸发器,用于样品结晶分离

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摘要

Microfluidic devices for sample crystallization separation plays crucially important role in various on-chip analytical and testing scenes. Evaporation-based microfluidic crystallization technology is one of the most important methods for on-chip sample enrichment and crystallization separation. However, the solvent evaporation process in closed chip device is severely limited by poor vapor transportation, unstable interfacial behaviors and low evaporation rate. Aiming to address these issues, here we designed a microfluidic membrane evaporator for fast continuous flow sample crystallization separation. In this design, laser induced heating effect was employed to trigger the evaporation of the solvent, gas-permeable hydrophobic polytetrafluoroethylene membrane was used to stabilize the gas-liquid interface and provide vapor pathways during the evaporation process. Effects of laser power, solution flow rate and sample concentration on the crystallization separation performance was investigated. Results indicates the designed microfluidic membrane evaporator has good crystallization separation performance under different operation conditions, which can be further applied to different types of microfluidic systems and platforms for on-chip analysis and testing.
机译:用于样品结晶分离的微流体装置在各种片上分析和测试场景中起着重要的重要作用。基于蒸发的微流体结晶技术是片上样品富集和结晶分离的最重要方法之一。然而,封闭芯片装置中的溶剂蒸发过程受到差的蒸汽运输,不稳定界面行为和低蒸发速率的严重限制。旨在解决这些问题,这里我们设计了一种微流体膜蒸发器,用于快速连续流动样品结晶分离。在这种设计中,采用激光诱导的加热效果来触发溶剂的蒸发,使用透气性疏水性聚四氟乙烯乙烯膜来稳定气液界面并在蒸发过程中提供蒸气途径。研究了激光功率,溶液流速和样品浓度对结晶分离性能的影响。结果表明,设计的微流体膜蒸发器在不同的操作条件下具有良好的结晶分离性能,可进一步应用于不同类型的微流体系统和用于片上分析和测试的平台。

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