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基于铝基底的喷墨打印环三亚甲基三硝胺(RDX)标准品的红外反射光谱评估。

Infrared Reflectance Spectroscopic Evaluation of Inkjet Printed Standards of Cyclotrimethylenetrinitramine (RDX) on Aluminum Substrates.

机构信息

1 Naval Research Laboratory, Washington, DC, USA.

2 United States Army Research Laboratory, Adelphi, MD, USA.

出版信息

Appl Spectrosc. 2019 Feb;73(2):214-220. doi: 10.1177/0003702818809944. Epub 2018 Nov 14.

Abstract

The Department of Defense (DOD) and first responder communities are evaluating and developing optical systems for the detection and identification of explosives and components used for assembling homemade explosives (HMEs). Emerging detection technologies must be evaluated with authentic hazard material concentrations to ensure their accurate and reliable use in the field. In this work, infrared (IR) reflectance spectra over the spectral rage of 1000-1700 cm were collected for different concentrations of inkjet-printed RDX (cyclotrimethylenetrinitramine) samples deposited onto aluminum substrates. A plot of the integrated area of both the symmetric and asymmetric NO vibrational bands for RDX on aluminum exhibited good linearity over the concentration range 20-500 µg/cm. Detection limits for RDX on an aluminum surface were calculated to be 10.7 µg/cm for the symmetric NO vibrational band and 1.4 µg/cm for the asymmetric NO vibrational band. Evaluation of the NO vibrational band areas at different locations of the RDX array demonstrated that the samples exhibited good homogeneity across the surface. The concentration of an unknown sample of RDX on aluminum was determined using the fitted equations; results showed good agreement between the calculated and actual RDX surface concentration. The lot-to-lot variation of RDX on the aluminum surface was compared using the long wavelength infrared (LWIR) spectral band areas for two different lots of standards printed at the same RDX surface concentration. Results showed excellent lot-to-lot agreement indicating good reproducibility of the standards for RDX.

摘要

美国国防部(DOD)和急救人员社区正在评估和开发用于检测和识别爆炸物以及用于组装自制爆炸物(HME)的组件的光学系统。新兴的检测技术必须在真实的危险材料浓度下进行评估,以确保它们在现场的准确和可靠使用。在这项工作中,收集了不同浓度的喷墨打印 RDX(环三亚甲基三硝胺)样品沉积在铝基底上的光谱范围为 1000-1700 cm 的红外(IR)反射光谱。在铝上的 RDX 的对称和不对称 NO 振动带的积分面积的图显示出在 20-500 µg/cm 的浓度范围内的良好线性关系。在铝表面上的 RDX 的检测限为对称 NO 振动带的 10.7 µg/cm 和不对称 NO 振动带的 1.4 µg/cm。对 RDX 阵列不同位置的 NO 振动带区域的评估表明,样品在整个表面上表现出良好的均匀性。使用拟合方程确定铝上未知 RDX 样品的浓度;结果表明,计算出的和实际的 RDX 表面浓度之间存在良好的一致性。使用两个不同批次的标准在相同的 RDX 表面浓度下打印的长波红外(LWIR)光谱带面积比较了铝表面上 RDX 的批间变化。结果表明,批间一致性非常好,表明 RDX 标准具有良好的重现性。

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