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Micromachined Chemiluminescent System for Explosives Detection

机译:用于爆炸物检测的微机械化学发光系统

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Under a recent US Office of Naval Research University Affiliated Research Center (UARC) Basic Research Program we have begun a number of activities that we hope will enhance future ability to detect the presence of explosives vapors and residues. Here we present initial work on the development of a microfluidic system for a new point chemical sensor allowing the rapid, accurate, and specific detection of vapors emitted by explosive materials. We have already extensively tested a micromachined platform with external optical excitation and detection. Our new chemical approach is to create a receptor with high affinity and selectivity to nitro-explosives. A series of chemiluminescent molecular signaling systems are proposed that are specifically directed toward detection of TNT, PETN, RDX, HMX, and CL-20. These will be used in a new micromachined platform that integrates photodetectors directly into a micromachined micro-fluidic bead platform for detection of the chemiluminescent signals. By integrating photodetectors into the sidewalls of our chemical sensor array, in immediate proximity to the sensing microbeads, we can eliminate all external optics currently required for optical signal collection. This should allow a more compact and robust system to be constructed by integrating photodetection and fluidics into a single chip-based platform. Additionally, a concept of accessing a photodiode using inductive coupling, i.e. non-contact wireless reading, is introduced and demonstrated.
机译:在最近的美国海军研究大学附属研究中心(UARC)基础研究计划办公室下,我们已经开展了许多活动,我们希望这些活动将增强未来检测爆炸性蒸气和残留物的能力。在这里,我们介绍了用于新型点化学传感器的微流控系统开发的初步工作,该系统可快速,准确,特定地检测爆炸性物质散发的蒸气。我们已经通过外部光学激发和检测对微加工平台进行了广泛的测试。我们的新化学方法是创建对硝基炸药具有高亲和力和选择性的受体。提出了一系列化学发光分子信号系统,这些系统专门针对TNT,PETN,RDX,HMX和CL-20的检测。这些将在新的微加工平台中使用,该平台将光电检测器直接集成到微加工微流控微珠平台中,以检测化学发光信号。通过将光电探测器集成到我们的化学传感器阵列的侧壁中,紧邻传感微珠,我们可以消除当前光信号收集所需的所有外部光学器件。通过将光检测和流体技术集成到基于单个芯片的平台中,这将允许构建更紧凑,更强大的系统。另外,介绍并演示了使用感应耦合访问光电二极管的概念,即非接触式无线读取。

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