首页> 外文会议>Conference on Detection and Remediation Technologies for Mines and Minelike Targets IX pt.2; 20040412-20040416; Orlando,FL; US >Spectroscopic investigation of the spectroscopic signatures of 2,4-DNT and 2,6-DNT their interactions with sand particles
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Spectroscopic investigation of the spectroscopic signatures of 2,4-DNT and 2,6-DNT their interactions with sand particles

机译:2,4-DNT和2,6-DNT与沙粒相互作用的光谱特征的光谱研究

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摘要

Raman Spectroscopy is a well established tool for vibrational spectroscopy analysis. Interactions of explosives with different substrates can be measured by using quantitative vibrational signal shift information of scattered Raman light associated with these interactions. A vibrational spectroscopic study has been carried out on 2,4-DNT and 2,6-DNT crystals. Raman Microscopy spectrometers equipped with 514 nm and 785 nm laser excitation lines were used. The samples were recrystallized on different solvents (water, methanol and acetonitrile) and allowed to interact with soil samples. The interaction with sand and soil samples doped with the nitroaromatic compounds showed significant shifts in its peaks. The above information was used to detect DNT in soil using Raman Microscopy. These results will make possible the development of highly sensitive sensors for detection of explosives materials.
机译:拉曼光谱仪是用于振动光谱分析的成熟工具。炸药与不同基质的相互作用可以通过使用与这些相互作用相关的散射拉曼光的定量振动信号位移信息来测量。对2,4-DNT和2,6-DNT晶体进行了振动光谱研究。使用配备有514 nm和785 nm激光激发线的拉曼显微镜光谱仪。样品在不同的溶剂(水,甲醇和乙腈)上重结晶,并与土壤样品相互作用。与掺有硝基芳族化合物的沙子和土壤样品的相互作用显示出其峰的显着变化。以上信息用于通过拉曼显微镜检测土壤中的DNT。这些结果将有可能开发用于检测爆炸物的高灵敏度传感器。

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