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首页> 外文期刊>Optics & Laser Technology >Raman and time-resolved pulsed photoacoustic spectroscopy of solid trinitrotoluene in graphite mixture: For identification of double resonant optical phonon signatures
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Raman and time-resolved pulsed photoacoustic spectroscopy of solid trinitrotoluene in graphite mixture: For identification of double resonant optical phonon signatures

机译:石墨混合物中固体三硝基甲苯的拉曼和时间分离的脉冲光谱:用于识别双谐振光学声子签名

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摘要

The optical phonon waves transfer mechanism between pure graphite (GP) and trinitrotoluene (TNT) using 1064 nm as an excitation wavelength based on the double resonant Raman effect and the pulsed photoacoustic (PA) technique has been investigated. The study was carried out at a different weight percentage of GP within TNT with respect to the two excitation wavelengths of 532 nm and 1064 nm (30 ps, 10 Hz, Q-switched Nd: YAG laser). The equal and double proportional matrix of the GP and TNT (solid samples) generate a strong PA signal with high quality factor (Q-factor) due to the interaction of optical phonons of GP and TNT in the same phase. The Raman spectra, recorded at 785 nm wavelength provides an insight on the pi-electron coupling between the GP and TNT. The obtained experimental results confirm that the pure GP and its derivatives, which have a SP2/SP3 hybridization, can be used to develop a new sensing optode for the detection and identification of explosive molecules in the visible and near-IR wavelengths range.
机译:已经研究了使用1064nm作为基于双谐振拉曼效应的激发波长的纯石墨(GP)和三硝基甲苯(TNT)之间的光学声子波转移机制和脉冲光声效应和脉冲光声(PA)技术。该研究在TNT中以不同的重量百分比的GP进行,相对于532nm的两个激发波长和1064nm(30 ps,10 hz,q切换的Nd:yag激光)。 GP和TNT(固体样本)的等于和双比例矩阵(固体样本)由于GP和TNT的光学声子的相互作用而产生高质量因子(Q系数)的强PA信号。记录在785nm波长的拉曼光谱提供了对GP和TNT之间的PI-电子耦合的识别。所获得的实验结果证实,具有SP2 / SP3杂交的纯GP及其衍生物可用于开发用于检测和识别可见光和接近IR波长范围内的爆炸分子的新感测光电。

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