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本文引用的文献

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Rapid Prototyping of Microfluidic Systems in Poly(dimethylsiloxane).聚二甲基硅氧烷微流控系统的快速成型
Anal Chem. 1998 Dec 1;70(23):4974-84. doi: 10.1021/ac980656z.
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Elastomeric membrane valves in a disc.盘片上的弹性膜阀。
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Rapid prototyping of arrayed microfluidic systems in polystyrene for cell-based assays.聚苯乙烯基阵列式微流控系统的快速成型及其在基于细胞检测中的应用。
Anal Chem. 2011 Feb 15;83(4):1408-17. doi: 10.1021/ac102897h. Epub 2011 Jan 24.
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Simple room temperature bonding of thermoplastics and poly(dimethylsiloxane).热塑性塑料和聚二甲基硅氧烷的简单室温键合。
Lab Chip. 2011 Mar 7;11(5):962-5. doi: 10.1039/c0lc00272k. Epub 2010 Dec 8.
5
Chemical-assisted bonding of thermoplastics/elastomer for fabricating microfluidic valves.化学辅助黏合热塑性塑料/弹性体以制造微流控阀。
Anal Chem. 2011 Jan 1;83(1):446-52. doi: 10.1021/ac101999w. Epub 2010 Dec 1.
6
Latest developments in micro total analysis systems.微型全分析系统的最新进展。
Anal Chem. 2010 Jun 15;82(12):4830-47. doi: 10.1021/ac100969k.
7
A facile route for irreversible bonding of plastic-PDMS hybrid microdevices at room temperature.一种在室温下实现塑料-PDMS 混合微器件不可逆键合的简易方法。
Lab Chip. 2010 May 21;10(10):1274-80. doi: 10.1039/b924753j. Epub 2010 Feb 16.
8
PMMA/PDMS valves and pumps for disposable microfluidics.用于一次性微流控的 PMMA/PDMS 阀和泵。
Lab Chip. 2009 Nov 7;9(21):3088-94. doi: 10.1039/b907254c. Epub 2009 Aug 20.
9
Manufacturable plastic microfluidic valves using thermal actuation.采用热激励制造可量产的塑料微流控阀。
Lab Chip. 2009 Nov 7;9(21):3082-7. doi: 10.1039/b909742b. Epub 2009 Aug 7.
10
Plastic-PDMS bonding for high pressure hydrolytically stable active microfluidics.用于高压水解稳定活性微流控的塑料与聚二甲基硅氧烷键合
Lab Chip. 2009 Jun 7;9(11):1618-24. doi: 10.1039/b820924c. Epub 2009 Mar 13.

采用电晕放电诱导接枝聚合技术对聚二甲基硅氧烷与环状烯烃共聚物的粘结性能进行表征。

Characterization of bonding between poly(dimethylsiloxane) and cyclic olefin copolymer using corona discharge induced grafting polymerization.

机构信息

Interdisciplinary Microsystems Group, Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL 32611-6250, USA.

出版信息

J Colloid Interface Sci. 2012 Jan 1;365(1):289-95. doi: 10.1016/j.jcis.2011.09.004. Epub 2011 Sep 10.

DOI:10.1016/j.jcis.2011.09.004
PMID:21962541
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3210478/
Abstract

Thermoplastics have been increasingly used for fabricating microfluidic devices because of their low cost, mechanical/biocompatible attributes, and well-established manufacturing processes. However, there is sometimes a need to integrate such a device with components made from other materials such as polydimethylsiloxane (PDMS). Bonding thermoplastics with PDMS to produce hybrid devices is not straightforward. We have reported our method to modify the surface property of a cyclic olefin copolymer (COC) substrate by using corona discharge and grafting polymerization of 3-(trimethoxysilyl)propyl methacrylate; the modified surface enabled strong bonding of COC with PDMS. In this paper, we report our studies on the surface modification mechanism using attenuated total reflectance Fourier transform infrared spectroscopy (ATR-FTIR), X-ray photoelectron spectroscopy (XPS), atomic force microscopy (AFM) and contact angle measurement. Using this bonding method, we fabricated a three-layer (COC/PDMS/COC) hybrid device consisting of elastomer-based valve arrays. The microvalve operation was confirmed through the displacement of a dye solution in a fluidic channel when the elastomer membrane was pneumatically actuated. Valve-enabled microfluidic handling was demonstrated.

摘要

热塑性塑料由于其低成本、机械/生物相容性以及成熟的制造工艺,已越来越多地用于制造微流控器件。然而,有时需要将此类器件与其他材料(如聚二甲基硅氧烷 (PDMS))制成的组件集成在一起。将热塑性塑料与 PDMS 键合以制造混合器件并不简单。我们已经报道了一种通过电晕放电和 3-(三甲氧基甲硅烷基)丙基甲基丙烯酸酯接枝聚合来修饰环烯烃共聚物 (COC) 基底表面性能的方法;改性表面使 COC 与 PDMS 能够牢固键合。在本文中,我们使用衰减全反射傅里叶变换红外光谱 (ATR-FTIR)、X 射线光电子能谱 (XPS)、原子力显微镜 (AFM) 和接触角测量研究了表面改性机制。使用这种键合方法,我们制造了一种由弹性体基阀阵列组成的三层(COC/PDMS/COC)混合器件。当弹性体膜气动致动时,通过在流道中的染料溶液的位移来确认微阀的操作。演示了启用微阀的微流体处理。