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从聚二甲基硅氧烷模板复制的聚甲基丙烯酸甲酯毛细管电泳微芯片用于阳离子测定。

Poly(methyl methacrylate) CE microchips replicated from poly(dimethylsiloxane) templates for the determination of cations.

作者信息

Qu Song, Chen Xiaohong, Chen Di, Yang Penyuan, Chen Gang

机构信息

Department of Chemistry, Fudan University, Shanghai, China.

出版信息

Electrophoresis. 2006 Dec;27(24):4910-8. doi: 10.1002/elps.200600239.

Abstract

A novel method for the rapid fabrication of poly(methyl methacrylate) (PMMA) microfluidic chips using poly(dimethylsiloxane) (PDMS) templates has been demonstrated. The PDMS molds were fabricated by soft lithography. The dense prepolymerized solution of methyl methacrylate containing thermal and UV initiators was allowed to polymerized between a PDMS template and a piece of a 1 mm thick commercial PMMA plate under a UV lamp. The images of microchannels on the PDMS template were precisely replicated into the synthesized PMMA substrates during the UV-initiated polymerization of the prepolymerized solution on the surface of the PMMA plate at room temperature. The polymerization could be completed within 10 min under ambient temperature. The chips were subsequently assembled by thermal bonding of the channel plate and the cover sheet. The new fabrication method obviates the need for specialized replication equipment and reduces the complexity of prototyping and manufacturing. Nearly 20 PMMA chips were replicated using a single PDMS mold. The attractive performance of the new microfluidic chips has been demonstrated by separating and detecting cations in connection with contactless conductivity detection. The fabricated PMMA microchip has also been successfully employed for the determination of potassium and sodium in environmental and biological samples.

摘要

已经展示了一种使用聚二甲基硅氧烷(PDMS)模板快速制造聚甲基丙烯酸甲酯(PMMA)微流控芯片的新方法。PDMS模具通过软光刻制造。含有热引发剂和紫外光引发剂的甲基丙烯酸甲酯致密预聚合溶液在紫外灯下于PDMS模板和一块1毫米厚的商用PMMA板之间聚合。在室温下,预聚合溶液在PMMA板表面进行紫外引发聚合过程中,PDMS模板上微通道的图像被精确复制到合成的PMMA基板中。聚合在环境温度下10分钟内即可完成。随后通过通道板和盖板的热键合组装芯片。这种新的制造方法无需专门的复制设备,降低了原型制作和制造的复杂性。使用单个PDMS模具可复制近20个PMMA芯片。通过结合非接触式电导检测对阳离子进行分离和检测,证明了新型微流控芯片具有吸引人的性能。所制造的PMMA微芯片也已成功用于环境和生物样品中钾和钠的测定。

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