High pressure spectroscopic studies of hydrazine (N2H4)

被引:20
|
作者
Chellappa, Raja [1 ]
Dattelbaum, Dana [2 ]
Daemen, Luke [1 ]
Liu, Zhenxian [3 ]
机构
[1] Los Alamos Natl Lab, Lujan Ctr, POB 1663, Los Alamos, NM 87544 USA
[2] Alamos Natl Lab, Shock Phys, Los Alamos, NM 87544 USA
[3] Natl Synchrotron Light Source, U2A Beamline, Upton, NY 11973 USA
来源
关键词
D O I
10.1088/1742-6596/500/5/052008
中图分类号
O59 [应用物理学];
学科分类号
摘要
Pressure-induced changes (up to 20 GPa) to the structure and bonding in hydrazine (N2H4) have been investigated using diamond anvil cell (DAC) with in situ Raman spectroscopy. Liquid hydrazine solidifies at 0.3 GPa into a crystalline phase and its structure was established using synchrotron x-ray diffraction (XRD) measurements. The high pressure phase is monoclinic (P2(1)) with a remarkable correspondence to the low-T monoclinic structure that is also seen in the similar Raman spectral features. With increasing pressure, the modifications to N-H center dot center dot center dot N hydrogen bonding is observed with emergence of new contacts beyond 5 GPa as well as appearance of new lattice modes. This is accompanied by small changes in the pressure dependency (d nu/dP) of frequencies. Based on these observations, we conclude a sluggish phase transition in the 5-7 GPa range accompanied by selective strengthening and restructuring of hydrogen bonding network. Inelastic Neutron Scattering (INS) measurements performed in the 10-250 K range indicates that the order-disorder phase transition (observed in thin films at 175-80 K) driven by conformational changes is not observed in a bulk sample.
引用
收藏
页数:6
相关论文
共 50 条
  • [1] HYDRAZINE (N2H4)
    GOTO, Y
    JOURNAL OF SYNTHETIC ORGANIC CHEMISTRY JAPAN, 1986, 44 (01) : 77 - 78
  • [2] Enthalpy of Formation of N2H4 (Hydrazine) Revisited
    Feller, David
    Bross, David H.
    Ruscic, Branko
    JOURNAL OF PHYSICAL CHEMISTRY A, 2017, 121 (32): : 6187 - 6198
  • [3] Problem of mixing of stereoisomers in the hydrazine molecule N2H4
    A. V. Burenin
    Optics and Spectroscopy, 2000, 88 : 28 - 34
  • [4] Problem of mixing of stereoisomers in the hydrazine molecule N2H4
    Burenin, AV
    OPTICS AND SPECTROSCOPY, 2000, 88 (01) : 28 - 34
  • [5] VIBRATIONAL COMBINATION SCATTERING SPECTRUM OF HYDRAZINE N2H4 VAPOUR
    KOTOV, YI
    TATEVSKY, VM
    OPTIKA I SPEKTROSKOPIYA, 1963, 15 (01): : 128 - 129
  • [6] Electron scattering cross sections for diazene (N2H2) and hydrazine (N2H4)
    Araujo, N. F. O.
    da Mata, V. A. S.
    de Souza, G. L. C.
    JOURNAL OF ELECTRON SPECTROSCOPY AND RELATED PHENOMENA, 2022, 254
  • [7] Recent Progress in the Development of Fluorescent Probes for the Detection of Hydrazine (N2H4)
    Yan, Liqiang
    Zhang, Shiqing
    Xie, Ya
    Mu, Xinyue
    Zhu, Jinbiao
    CRITICAL REVIEWS IN ANALYTICAL CHEMISTRY, 2022, 52 (01) : 210 - 229
  • [8] Hydrazine Energy Storage: Displacing N2H4 from the Metal Coordination Sphere
    McNeece, Andrew J.
    Jaros, Adam
    Batista, Enrique R.
    Yang, Ping
    Scott, Brian L.
    Davis, Benjamin L.
    CHEMSUSCHEM, 2022, 15 (18)
  • [9] Hydrazine (N2H4) adsorption on Ni(100) - Density functional theory investigation
    Agusta, Mohammad Kemal
    David, Melanie
    Nakanishi, Hiroshi
    Kasai, Hideaki
    SURFACE SCIENCE, 2010, 604 (3-4) : 245 - 251
  • [10] High-extent dehydrogenation of hydrazine borane N2H4BH3 by hydrolysis of BH3 and decomposition of N2H4
    Hannauer, Julien
    Akdim, Ouardia
    Demirci, Umit B.
    Geantet, Christophe
    Herrmann, Jean-Marie
    Miele, Philippe
    Xu, Qiang
    ENERGY & ENVIRONMENTAL SCIENCE, 2011, 4 (09) : 3355 - 3358