TY - JOUR
T1 - First-principles calculation of electronic, vibrational, and thermodynamic properties of triaminoguanidinium nitrate
AU - Li, Wen Guang
AU - Gan, Yun Dan
AU - Bai, Zhi Xin
AU - Zhang, Ming Jian
AU - Liu, Fu Sheng
AU - Tang, Bin
AU - Liu, Qi Jun
AU - Chang, Xiang Hui
N1 - Publisher Copyright:
© 2021, The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature.
PY - 2021/6
Y1 - 2021/6
N2 - In recent years, the important energetic material triaminoguanidinium nitrate (TAGN) has been widely used, and the process of synthesizing TAGN has become more and more perfect. However, there are relatively few theoretical studies on TAGN. This paper uses first-principles calculations to more systematically study the crystal structure, and electronic, vibrational, and thermodynamic properties of TAGN. The calculation results show that the calculated unit cell parameters are relatively consistent with the values obtained through X-ray diffraction experiments. This article describes in detail the state density of the valence electrons of each atom. By analyzing the vibrational properties of TAGN crystal, the vibration mode corresponding to each optical wave is obtained. At the same time, the vibration mode of each peak in the Raman spectrum and the infrared spectrum is described in detail. Then, the calculated value is compared with the experimental value; it can be seen that the error is relatively small. According to the vibration characteristics, a series of thermodynamic functions such as enthalpy (H), Debye temperature (Θ), free energy (F), and entropy (S) are calculated. These thermodynamic functions can provide a certain reference for future research.
AB - In recent years, the important energetic material triaminoguanidinium nitrate (TAGN) has been widely used, and the process of synthesizing TAGN has become more and more perfect. However, there are relatively few theoretical studies on TAGN. This paper uses first-principles calculations to more systematically study the crystal structure, and electronic, vibrational, and thermodynamic properties of TAGN. The calculation results show that the calculated unit cell parameters are relatively consistent with the values obtained through X-ray diffraction experiments. This article describes in detail the state density of the valence electrons of each atom. By analyzing the vibrational properties of TAGN crystal, the vibration mode corresponding to each optical wave is obtained. At the same time, the vibration mode of each peak in the Raman spectrum and the infrared spectrum is described in detail. Then, the calculated value is compared with the experimental value; it can be seen that the error is relatively small. According to the vibration characteristics, a series of thermodynamic functions such as enthalpy (H), Debye temperature (Θ), free energy (F), and entropy (S) are calculated. These thermodynamic functions can provide a certain reference for future research.
KW - Electronic properties
KW - First-principles calculation
KW - Thermodynamic properties
KW - Triaminoguanidinium nitrate
KW - Vibrational properties
UR - http://www.scopus.com/inward/record.url?scp=85107085497&partnerID=8YFLogxK
U2 - 10.1007/s00894-021-04803-3
DO - 10.1007/s00894-021-04803-3
M3 - 文章
C2 - 34037870
AN - SCOPUS:85107085497
SN - 1610-2940
VL - 27
JO - Journal of Molecular Modeling
JF - Journal of Molecular Modeling
IS - 6
M1 - 187
ER -