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Using Transmissive Photonic Band Edge Shift to Detect Explosives: A Study with 2,4,6-Trinitrotoluene (TNT)

机译:使用透射光子频带边缘转移来检测炸药:用2,4,6-三硝基甲苯(TNT)的研究

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摘要

Photonic crystals (PhCs) possess outstanding optical properties that can be exploited for chemical sensing. We utilized a three-dimensional close-packed PhC structure made of functionalized silica nanoparticles. They consist of alternating high and low refractive index regions and have optical properties, such as photonic band structures, that are very sensitive to the change of physical structures. This study used 2,4,6-trinitrotoluene (TNT) to illustrate a detection method based on the transmissive photonic band edge shift (TPBES) due to the binding of TNT with amine anchored on particle surfaces to form Meisenheimer (amine-TNT) complexes. PhCs are exceptionally sensitive to a small change in refractive index caused by surface modification. As a result, they are suitable for sensing specific reactions between an amine and TNT. This method achieved a wide detection range of TNT concentrations from 10$^{-12}$ to 10$^{-4}$ M. 2,4-Dinitrotoluene (DNT) and toluene were used as a control and blank, respectively. Because of gravitational sedimentation, the TNT-functionalized particles were self-assembled in pure ethanol. They were measured by UV–visible transmission spectroscopy. A three-dimensional model to simulate the detection system was built using the particles’ center-to-center distance (a) and effective dielectric constant (ε) as a function of the TNT concentrations. Two sets of simulations were performed: the first set involved a parametric sweep of the center-to-center distance of TNT-functionalized crystals using ε = 2.015. The second set involved a parametric sweep of the dielectric constant with a = 263.1 nm. These perturbations yield a TPBES response that is in agreement with our experimental results.
机译:光子晶体(PHCS)具有优异的光学性质,可以利用化学传感。我们利用由官能化二氧化硅纳米粒子制成的三维近填充PHC结构。它们包括交替的高和低折射率区域,并且具有光学性质,例如光子带结构,对物理结构的变化非常敏感。该研究使用了2,4,6-三硝基甲苯(TNT)来说明由于TNT与锚固在颗粒表面上的TNT与胺的结合而基于透射光子带边缘偏移(TPBE)以形成Meisenheimer(胺-TNT)配合物。 PHCS对由表面改性引起的折射率的小变化非常敏感。结果,它们适用于感测胺和TNT之间的特定反应。该方法实现了从10 $ ^ { - 12} $ 10 $ ^ { - 4} $ M.2,4-二硝基甲苯(DNT)和甲苯的宽度检测范围,分别用作对照和空白。由于引力沉降,TNT官能化颗粒在纯乙醇中自组装。它们是通过UV可见光透射光谱法测量的。用粒子的中心到中心距离(A)和有效介电常数(ε)模拟检测系统的三维模型作为TNT浓度的函数构建。执行两组模拟:第一个组涉及使用ε= 2.015的TNT官能化晶体的中心到中心距离的参数扫描。第二组涉及具有A = 263.1nm的介电常数的参数扫描。这些扰动产生了与我们的实验结果一致的TPBES反应。

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