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Novel approaches to the construction of miniaturized analytical instrumentation

机译:小型分析仪器构建的新方法

摘要

This paper focuses on the design, construction, preliminary testing, and potential applications of three forms of miniaturized analytical instrumentation. The first is an optical fiber instrument for monitoring pH and other cations in aqueous solutions. The instrument couples chemically selective indicators that were immobilized at porous polymeric films with a hardware package that provides the excitation light source, required optical components, and detection and data processing hardware. The second is a new form of a piezoelectric mass sensor. The sensor was fabricated by the deposition of a thin (5.5 micron) film of piezoelectric aluminum nitride (AIN). The completed deposition process yields a thin film resonator (TFR) that is shaped as a 400 micron square and supports a standing bulk acoustic wave in a longitudinal mode at frequencies of approx. 1 GHz. Various deposition and vapor sorption studies indicate that the mass sensitivity of the TFR's rival those of the most sensitive mass sensors currently available, though offering such performance in a markedly smaller device. The third couples a novel form of liquid chromatography with microlithographic miniaturization techniques. The status of the miniaturization effort, the goal of which is to achieve chip-scale separations, is briefly discussed.
机译:本文重点介绍三种形式的小型分析仪器的设计,构造,初步测试和潜在应用。第一种是用于监测水溶液中的pH值和其他阳离子的光纤仪器。该仪器将固定在多孔聚合物膜上的化学选择性指示剂与提供激发光源,所需的光学组件以及检测和数据处理硬件的硬件组件结合在一起。第二种是压电质量传感器的新形式。传感器是通过沉积压电氮化铝(AIN)的薄膜(5.5微米)制成的。完成的沉积过程将产生一个薄膜谐振器(TFR),该谐振器的形状为400微米见方,并在纵向模态下以大约20kHz的频率支撑一个固定的体声波。 1 GHz。各种沉积和蒸气吸附研究表明,TFR的质量灵敏度可与目前最敏感的质量传感器相媲美,尽管在明显更小的设备中提供了这种性能。第三对结合了一种新型的液相色谱与微光刻微型化技术。简要讨论了小型化工作的现状,其目标是实现芯片级分离。

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