Parylene gas chromatographic column for rapid thermal cycling

H. Noh, P. Hesketh, G. Frye-Mason
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引用次数: 141

Abstract

This paper presents a parylene gas chromatographic column with an embedded heating element. The parylene coating on a silicon microchannel and parylene/parylene thermal bonding technique were employed to fabricate a parylene column. The heating element is a thin gold film evaporated on the corrugated surface of the parylene column having long and rectangular geometry. Joule heating via the thin gold film is a very effective heating system for a parylene column. ANSYS heat transfer analysis was performed to investigate the thermal cycling and temperature uniformity of the parylene column. The parylene column showed much faster heating and cooling rates as well as lower power consumption compared to a silicon/glass column. The temperature difference between the top and the bottom of a parylene column that is due to the low thermal conductivity of parylene could be reduced to less than 0.1 K by inserting a thin metal layer between two parylene layers, forming a triple layer structure (parylene/platinum/parylene).
用于快速热循环的聚对二甲苯气相色谱柱
本文介绍了一种内置加热元件的聚对二甲苯气相色谱柱。采用硅微通道上的聚对二甲苯涂层和聚对二甲苯/聚对二甲苯热键合技术制备了聚对二甲苯柱。加热元件是蒸发在具有长矩形几何形状的聚对二甲苯柱的波纹表面上的薄金膜。通过金薄膜进行焦耳加热是一种非常有效的聚对二甲苯柱加热系统。采用ANSYS进行传热分析,研究聚对二甲苯塔的热循环和温度均匀性。与硅/玻璃柱相比,聚对二甲苯柱显示出更快的加热和冷却速度以及更低的功耗。通过在两层聚对二甲苯之间插入一层薄薄的金属层,形成聚对二甲苯/铂/聚对二甲苯三层结构,可以将聚对二甲苯热导率低所导致的柱顶与柱底温差降低到0.1 K以下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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