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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Deep-Ultraviolet Resonance Raman Excitation Profiles of NH_(4)NO_(3), PETN, TNT, HMX, and RDX
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Deep-Ultraviolet Resonance Raman Excitation Profiles of NH_(4)NO_(3), PETN, TNT, HMX, and RDX

机译:NH_(4)NO_(3),PETN,TNT,HMX和RDX的深紫外共振拉曼激发曲线

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摘要

We measured the dispersion of the absolute-differential Raman cross-sections of ammonium nitrate (NH_(4)NO_(3)), pentaerythritol tetranitrate (PETN), trinitrotoluene (TNT), nitroamine (HMX), and cyclotrimethylene-trinitramine (RDX) in acetonitrile and water solutions between 204 and 257 nm. The ultraviolet (UV) resonance Raman/differential Raman cross-sections of NH_(4)NO_(3), PETN, TNT, HMX, and RDX dramatically increase as the excitation wavelength decreases deep into the UV to 204 nm. NH4NO3, PETN, and RDX are best resonance-enhanced by the 204 nm excitation used here, while the optimum excitation wavelength for TNT and HMX is approx230 nm. The excitation profile of TNT roughly follows its absorption band shape. The excitation profiles for the different Raman bands of each explosive molecule differ, indicating that multiple-excitation wavelength spectra are not redundant and can offer additional information on the species present. We see no evidence of any nonlinear spectral response or sample degradation at the fluences and spectral accumulation times used here. However, we previously observed such phenomena at longer spectral accumulation times and higher fluences. These results are promising for the development of standoff deep-UV Raman methods for explosive molecule determinations.
机译:我们测量了硝酸铵(NH_(4)NO_(3)),季戊四醇四硝酸酯(PETN),三硝基甲苯(TNT),硝胺(HMX)和环三亚甲基三硝胺(RDX)的绝对微分拉曼截面的分散度在204至257 nm之间的乙腈和水溶液中溶解。 NH_(4)NO_(3),PETN,TNT,HMX和RDX的紫外(UV)共振拉曼截面/微分拉曼截面随着激发波长向UV深度的深处减小至204 nm而急剧增加。 NH4NO3,PETN和RDX可以通过此处使用的204 nm激发而得到最佳的共振增强,而TNT和HMX的最佳激发波长约为230 nm。 TNT的激发曲线大致遵循其吸收带形状。每个爆炸分子不同拉曼谱带的激发曲线不同,这表明多重激发波长光谱不是多余的,并且可以提供有关存在物种的其他信息。在这里使用的注量和光谱累积时间,我们看不到任何非线性光谱响应或样品降解的证据。但是,我们以前在更长的光谱累积时间和更高的注量下观察到了这种现象。这些结果对于开发用于爆炸性分子测定的远距离深紫外拉曼方法很有希望。

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