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Packaging and sensing platform using opto-electronic zinc oxide nano-heterostructure integration

机译:利用光电氧化锌纳米异质结构集成的包装和传感平台

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In this work we report the sensing behavior of zinc oxide/pyrenebutyric acid nano-heterostructure and subsequent packaging of the sensor. High quality zinc oxide nanowires were synthesized and appropriately characterized. Surface of zinc oxide nanowires were engineered with optically active pyrenebutyric acid. Time dependent fluorescence quenching of the nano-heterostructure was utilized as a means to establish sensing behavior in presence of p-nitrophenol analyte. Furthermore, electrical characterization of pristine and surface-engineered zinc oxide nanowire chip is also reported. Based on these findings it was determined that the synthesized nano-heterostructure was capable of sensitive detection of p-nitrophenol vapor under ambient conditions. However, successful operation and reliable data is critically dependent on the analog sensor circuit design and subsequent packaging. Herein, we demonstrate a packaging strategy for integrating the sensing chip into a complete platform. Challenges with system integration are highlighted and a possible packaging approach for high sensitivity detection is outlined.
机译:在这项工作中,我们报告了氧化锌/对羟基丁酸纳米异质结构的传感行为以及传感器的后续包装。合成了高质量的氧化锌纳米线并对其进行了适当的表征。氧化锌纳米线的表面用光学活性pyr丁酸进行了工程改造。纳米异质结构的时间依赖性荧光猝灭被用作在对硝基苯酚分析物存在下建立传感行为的手段。此外,还报道了原始的和表面工程化的氧化锌纳米线芯片的电学表征。基于这些发现,确定了合成的纳米异质结构能够在环境条件下灵敏地检测对硝基苯酚蒸气。但是,成功的操作和可靠的数据主要取决于模拟传感器电路的设计和后续封装。在本文中,我们演示了将传感芯片集成到完整平台中的封装策略。系统集成面临的挑战突出,并概述了用于高灵敏度检测的可能封装方法。

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