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Ultrasensitive detection of explosives via hydrophobic condensation effect on biomimetic SERS platforms

机译:通过疏水性凝结效应对仿生液体平台的超敏感性检测

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摘要

3D biomimetic superhydrophobic Ag micro/nano-pillar array (AMA) surfaces as SERS substrates were prepared for ultrasensitive and reproducible detection of explosives such as picric acid (PA) and 3-nitro-1,2,4-triazol-5-one (NTO) by a simple, efficient, and inexpensive hydrophobic condensation strategy. We took advantage of different kinds of Si pillar arrays (biomimetic structure based on cicada wing topography) as templates for electrochemical deposition generation of 3D AMA. We studied the effects of biomimetic superhydrophobicity and different AMA micro-morphology on SERS performance from a macro and micro perspective, respectively. For the first time, simple hydrophilic organic synthesis process was also conducted to improve poor water-solubility of toxins to aid detection. Such SERS sensors exhibited high sensitivity to rhodamine 6G (R6G) in a low concentration of 10(-15) mol L-1, PA in a low concentration of 10(-12) mol L-1, and NTO in concentration as low as 10(-13) mol L-1 after hydrophilic synthesis. This method of hydrophobic condensation of substrates resolved the problems for extremely low concentration of organic solutions of toxins in difficulty to SERS detection. Furthermore, it was found to be very useful to improve practical application of portable Raman detection devices to detect low-solubility protonic toxins.
机译:3D仿生超疏水性AG微/纳米柱阵列(AMA)表面为SERS基材,用于超敏感和可重复的炸药检测,如麦克酸(PA)和3-硝基-1,2,4-三唑-5-One( NTO)通过简单,高效,廉价的疏水凝结策略。我们利用不同种类的Si柱子阵列(基于蝉翼地形的仿生结构)作为3D AMA电化学沉积产生的模板。我们研究了仿生超细药和不同AMA微观形态的影响,分别从宏观和微观角度分别对SERs性能进行了影响。目前还进行了简单的亲水性有机合成方法,以改善毒素的不良水溶性以帮助检测。这种SERS传感器以低浓度的10(-15)摩尔L-1,低浓度为10(-12)摩尔L-1,并且NTO浓度低至10(-13)摩尔L-1亲水合成后。这种疏水凝结的底物凝结方法解决了难以溶液检测的极低浓度的有机溶液的问题。此外,发现改善便携式拉曼检测装置的实际应用是非常有用的,以检测低溶解度质子毒素。

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