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压力和温度对LLM - 105拉曼光谱的影响。

Pressure and temperature effects on the Raman spectra of LLM-105.

作者信息

Yuan Wen-Shuo, Hong Dan, Luo Ying-Xi, Li Xing-Han, Liu Fu-Sheng, Liu Zheng-Tang, Liu Qi-Jun

机构信息

Bond and Band Engineering Group, School of Physical Science and Technology, Southwest Jiaotong University, Chengdu 610031, People's Republic of China.

Bond and Band Engineering Group, School of Physical Science and Technology, Southwest Jiaotong University, Chengdu 610031, People's Republic of China; School of Intelligent Medicine, Chengdu University of Traditional Chinese Medicine, Liutai Avenue 1166, Chengdu 611137, China.

出版信息

Spectrochim Acta A Mol Biomol Spectrosc. 2023 Dec 15;303:123170. doi: 10.1016/j.saa.2023.123170. Epub 2023 Jul 18.

DOI:10.1016/j.saa.2023.123170
PMID:37517265
Abstract

Currently, only one crystal structure of LLM-105 (2,6-diamino-3,5-dinitropyrazine-1-oxide) (P2/n) has been discovered, and there are still debates on its phase transition point and phase diagram. Based on previous work, we performed crystal structure, Raman spectra, and vibrational properties calculations on LLM-105 crystal. Our results indicate that the crystal structure of LLM-105 remains stable until compressed to 49 GPa, beyond which it may undergo two phase transitions at pressure intervals of 49.0-49.1 GPa and 51.4-51.5 GPa, respectively. Analysis of Raman shift results suggests that these two phase transitions may be reversible, with an intermediate phase possibly acting as a transition phase. Additionally, based on the quasi-harmonic approximation, we fitted the experimental data of LLM-105 lattice expansion state, obtaining the volume at zero pressure and using it for Raman spectra calculations. The results demonstrated the accuracy of this quasi-harmonic approximation method in describing the redshift of Raman peaks during the heating process and the excitation ratio of Raman peaks in different wavenumber ranges.

摘要

目前,仅发现了LLM-105(2,6-二氨基-3,5-二硝基吡嗪-1-氧化物)的一种晶体结构(P2/n),并且关于其相变点和相图仍存在争议。基于先前的工作,我们对LLM-105晶体进行了晶体结构、拉曼光谱和振动性质计算。我们的结果表明,LLM-105的晶体结构在压缩至49 GPa之前保持稳定,超过该压力后,它可能分别在49.0 - 49.1 GPa和51.4 - 51.5 GPa的压力区间经历两次相变。对拉曼位移结果的分析表明,这两次相变可能是可逆的,中间相可能作为过渡相。此外,基于准谐近似,我们拟合了LLM-105晶格膨胀状态的实验数据,得到零压力下的体积并将其用于拉曼光谱计算。结果证明了这种准谐近似方法在描述加热过程中拉曼峰的红移以及不同波数范围内拉曼峰的激发比方面的准确性。

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