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Synthesis of Poly(4-vinylpyridine) Thin Films by Initiated Chemical Vapor Deposition (iCVD) for Selective Nanotrench-Based Sensing of Nitroaromatics

机译:通过化学气相沉积(iCVD)合成的(4-乙烯基吡啶)薄膜,用于基于硝基沟槽的硝基芳族化合物选择性传感

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摘要

A new nanoscale sensing concept for the detection of nitroaromatic explosives is described. The design consists of nitroaromatic-selective polymeric layers deposited inside microfabricated trenches. As the layers are exposed to nitroaromatic vapors, they swell and contact each other to close an electrical circuit. The nitroaromatic selective polymer, poly(4-vinylpyridine) (P4VP), is deposited in the trenches using initiated chemical vapor deposition (iCVD). P4VP is characterized for the first time as a selective layer for the absorption of nitroaromatic vapors. The Flory-Huggins equation is used to model the swelling response to nitroaromatic vapors. The Flory-Huggins interaction parameter for the P4VP-nitrobenzene system at 40 ℃ is 0.71 and 0.25 for P4VP-4-nitrotoluene at 60 ℃. Sensing of nitrobenzene vapors is demonstrated in a prototype device, while techniques to improve the performance of the design in terms of response time and sensitivities are described. Modeling shows that concentration and mass limits of detection of 0.95 ppb and 3 fg, respectively, can be achieved.
机译:描述了一种用于检测硝基芳族炸药的新型纳米传感概念。该设计由沉积在微细沟槽内的硝基芳香族选择性聚合物层组成。当这些层暴露于硝基芳族蒸气时,它们膨胀并彼此接触以闭合电路。使用引发的化学气相沉积(iCVD),将硝基芳族选择性聚合物聚(4-乙烯基吡啶)(P4VP)沉积在沟槽中。 P4VP首次被表征为吸收硝基芳香蒸气的选择性层。 Flory-Huggins方程用于模拟对硝基芳族蒸气的溶胀响应。在40℃下,P4VP-硝基苯体系的Flory-Huggins相互作用参数为0.71,而在60℃下,P4VP-4-硝基甲苯的相互作用参数为0.25。在原型设备中演示了硝基苯蒸气的感测,同时描述了在响应时间和灵敏度方面改善设计性能的技术。建模显示,可以分别达到0.95 ppb和3 fg的检测浓度和质量极限。

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  • 来源
    《Advanced Functional Materials》 |2010年第7期|1144-1151|共8页
  • 作者单位

    Department of Chemical Engineering Institute for Soldier Nanotechnologies Massachusetts Institute of Technology 77 Massachusetts Avenue, Cambridge, MA 02139 (USA);

    Department of Chemical Engineering Institute for Soldier Nanotechnologies Massachusetts Institute of Technology 77 Massachusetts Avenue, Cambridge, MA 02139 (USA);

    Department of Chemical Engineering Institute for Soldier Nanotechnologies Massachusetts Institute of Technology 77 Massachusetts Avenue, Cambridge, MA 02139 (USA);

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