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热塑性弹性体凝胶:用于微流控化学分析系统的先进基底。

Thermoplastic elastomer gels: an advanced substrate for microfluidic chemical analysis systems.

作者信息

Sudarsan Arjun P, Wang Jian, Ugaz Victor M

机构信息

Department of Chemical Engineering, Texas A&M University, College Station, TX 77843, USA.

出版信息

Anal Chem. 2005 Aug 15;77(16):5167-73. doi: 10.1021/ac050448o.

Abstract

We demonstrate the use of thermoplastic elastomer gels as advanced substrates for construction of complex microfluidic networks suitable for use in miniaturized chemical analysis systems. These gels are synthesized by combining inexpensive polystyrene-(polyethylene/polybutylene)-polystyrene triblock copolymers with a hydrocarbon extender oil for which the ethylene/butylene midblocks are selectively miscible. The insoluble styrene end blocks phase separate into localized nanodomains, resulting in the formation of an optically transparent, viscoelastic, and biocompatible gel network that is melt-processable at temperatures in the vicinity of 100 degrees C. This unique combination of properties allows microfluidic channels to be fabricated in a matter of minutes by simply making impressions of the negative relief structures on heated master molds. Melt processability allows multiple impressions to be made against different masters to construct complex geometries incorporating multi-height features within the same microchannel. Intricate interconnected multilayered structures are also easily fabricated owing to the ability to bond and seal multiple layers by briefly heating the material at the bond interface. Thermal and mechanical properties are tunable over a wide range through proper selection of gel composition.

摘要

我们展示了热塑性弹性体凝胶作为先进基底在构建适用于小型化化学分析系统的复杂微流体网络中的应用。这些凝胶是通过将廉价的聚苯乙烯 - (聚乙烯/聚丁烯) - 聚苯乙烯三嵌段共聚物与一种烃类增量油混合合成的,其中乙烯/丁烯中间嵌段具有选择性互溶性。不溶性的苯乙烯端嵌段相分离成局部纳米域,从而形成一种光学透明、粘弹性且生物相容的凝胶网络,该网络在100摄氏度左右的温度下可熔融加工。这种独特的性能组合使得只需在加热的母模上压制阴模结构,就能在几分钟内制造出微流体通道。熔融加工性允许针对不同的母模进行多次压制,以构建在同一微通道内包含多高度特征的复杂几何形状。由于能够通过在粘结界面处短暂加热材料来粘结和密封多层,复杂的相互连接的多层结构也很容易制造。通过适当选择凝胶组成,热性能和机械性能可在很宽的范围内调节。

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