首页> 外文会议>Symposium on Molecularly Imprinted Materials; 20031203-20031205; Boston,MA; US >Progress in Developing Nerve Agent Sensors Using Combinatorial Techniques
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Progress in Developing Nerve Agent Sensors Using Combinatorial Techniques

机译:使用组合技术开发神经代理传感器的进展

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Development of a sensor capable of selective detection of specific nerve agents is imperative in today's atmosphere of terrorism. The sensor needs to be inexpensive, portable, reliable, absent of false positives and available to all military and first responders. By utilizing the techniques of molecular imprinting, combinatorial chemistry, silica sol-gel synthesis and lanthanide luminescence, a sensor for the detection of the hydrolysis product of the nerve agent soman is being developed. There are many parameters that require investigation in order for the sensor to become a reality. These parameters include 1) the selection of a chelate that can bind to the lanthanide and anchor the nerve agent simulant during the formation of the molecularly imprinted polymer, 2) the determination of the environment best suited for this complex formation, 3) the formation, as well as modification of the silica sol-gel for molecular imprinting to take place, and 4) the proper quantity and ratios of monomers used to create the three dimensional imprint. Key to the success of optimizing these parameters is the development of a combinatorial assay that allows for the synthesis and testing of tens of thousands of combinations of parameters. Work on the development of the combinatorial assay has lead to a method of preparing thin film polymers capable of analyzing the presence of nerve agent simulants. Current work is underway to validate the combinatorial assay and to synthesize and evaluate a library of sensor materials selective for nerve agents.
机译:在当今的恐怖主义气氛中,迫切需要开发一种能够选择性检测特定神经介质的传感器。该传感器必须便宜,便携式,可靠,没有误报,并且可供所有军事和急救人员使用。通过利用分子印迹,组合化学,硅溶胶-凝胶合成和镧系元素发光的技术,正在开发用于检测神经毒剂索曼水解产物的传感器。为了使传感器成为现实,有许多参数需要调查。这些参数包括:1)在分子印迹聚合物形成过程中可以与镧系元素结合并锚定神经毒剂模拟物的螯合物的选择; 2)确定最适合这种复杂结构的环境; 3)结构;以及为了分子印迹而进行的二氧化硅溶胶-凝胶的改性,以及4)用于产生三维印迹的适当数量和比例的单体。优化这些参数的成功关键在于开发一种组合分析方法,该方法可以合成和测试数以万计的参数组合。组合测定法开发的工作导致了一种制备能够分析神经毒物模拟物的存在的薄膜聚合物的方法。当前的工作正在进行中,以验证组合测定以及合成和评估对神经毒症有选择性的传感器材料库。

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