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Biomimetic Sensitive Elements for 2,4,6-Trinitrotoluene Tested on Multi-Layered Sensors

机译:在多层传感器上测试的2,4,6-三硝基甲苯的仿真敏感元件

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In spite of technological progress, most of the current techniques for 2,4,6-trinitrotoluene (TNT) detection are time consuming due to laborious sensor preparation. Thereby, the aim of this work was to enlarge the knowledge for preparing sensitive elements for TNT with the aid of molecular imprinting; a known technique used to deliver biomimetic materials. The study first depicts the auto-assembly mechanism of (TNT) with functional diamino-silanes (i.e., N-(2-aminoethyl)-3-aminopropyl methyl dimethoxysilane), via “double” Meisenheimer complexes. This mechanism is being described herein for the first time and applied further to obtain molecularly imprinted polymer (MIP) films for TNT recognition. For testing the potential application of films as chemical sensor elements, typical rebinding assays of TNT in a liquid state and the rebinding of TNT in a vapor state, using multilayered sensor chips composed of quartz-chromium (Cr)-gold (Au)-titanium oxide (TiO2), were employed. Batch rebinding experiments have shown that thinner films were more efficient on retaining TNT molecules in the first five min, with a specificity of about 1.90. The quartz-Cr-Au-TiO2-MIP capacitive sensors, tested in vapor state, registered short response times (less than 25 s), low sensitivity to humidity and high specificity for TNT.
机译:尽管技术进步,但是由于2,4,6-三氮酰甲苯甲丁橡胶(TNT)检测的大多数技术是由于费力的传感器制备而耗时。因此,这项工作的目的是扩大借助分子印迹制备TNT的敏感元素的知识;用于递送仿生材料的已知技术。该研究首先将(TNT)与官能团硅烷(即(2-氨基乙基)-3-氨基丙基甲基二甲氧基硅烷)的自动组装机理描述,通过“双”Meisenheimer络合物。本文首次描述该机制,并进一步应用以获得用于TNT识别的分子印迹聚合物(MIP)膜。用于测试薄膜作为化学传感器元件的潜在应用,使用由石英 - 铬(Cr)-Gold(Au) - 粒子(Au) - 粒子组成的多层传感器芯片在液体状态下TNT的TNT的典型标记测定和TNT的螺纹。使用氧化物(TiO 2)。批量撤销实验表明,在前五分钟中保留TNT分子较薄的薄膜更有效,特异性约为1.90。在蒸汽状态下测试的石英-CR-AU-TiO2-MIP电容传感器,注册短响应时间(小于25秒),对TNT的湿度和高特异性的敏感性低。

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