Bishop Matthew M, Velisavljevic Nenad, Chellappa Raja, Vohra Yogesh K
Shock and Detonation Physics Group and §Materials Science in Radiation & Dynamic Extremes Group, Los Alamos National Laboratory , Los Alamos, New Mexico 87545, United States.
Department of Chemistry and ∥Department of Physics, University of Alabama at Birmingham , Birmingham, Alabama 35294, United States.
J Phys Chem A. 2015 Sep 17;119(37):9739-47. doi: 10.1021/acs.jpca.5b07811. Epub 2015 Sep 8.
The pressure-temperature (P-T) phase diagram of 1,1-diamino-2,2-dinitroethylene (FOX-7) was determined by in situ synchrotron infrared radiation spectroscopy with the resistively heated diamond anvil cell (DAC) technique. The stability of high-P-T FOX-7 polymorphs is established from ambient pressure up to 10 GPa and temperatures until decomposition. The phase diagram indicates two near isobaric phase boundaries at ∼2 GPa (α → I) and ∼5 GPa (I → II) that persists from 25 °C until the onset of decomposition at ∼300 °C. In addition, the ambient pressure, high-temperature α → β phase transition (∼111 °C) lies along a steep boundary (∼100 °C/GPa) with a α-β-δ triple point at ∼1 GPa and 300 °C. A 0.9 GPa isobaric temperature ramping measurement indicates a limited stability range for the γ-phase between 0.5 and 0.9 GPa and 180 and 260 °C, terminating in a β-γ-δ triple point. With increasing pressure, the δ-phase exhibited a small negative dT/dP slope (up to ∼0.2 GPa) before turning over to a positive 70 °C/GPa slope, at higher pressures. The decomposition boundary (∼55 °C/GPa) was identified through the emergence of spectroscopic signatures of the characteristic decomposition products as well as trapped inclusions within the solid KBr pressure media.
采用电阻加热金刚石对顶砧池(DAC)技术,通过原位同步辐射红外光谱法测定了1,1 - 二氨基 - 2,2 - 二硝基乙烯(FOX - 7)的压力 - 温度(P - T)相图。确定了从环境压力到10 GPa以及直至分解温度范围内高P - T条件下FOX - 7多晶型物的稳定性。相图表明在约2 GPa(α→I)和约5 GPa(I→II)处有两个近等压相界,该相界从25°C一直持续到约300°C分解开始。此外,环境压力下的高温α→β相变(约111°C)沿着一条陡峭的边界(约100°C/GPa),在约1 GPa和300°C处有一个α - β - δ三相点。一次0.9 GPa等压升温测量表明,γ相在0.5至0.9 GPa以及180至260°C之间的稳定性范围有限,终止于一个β - γ - δ三相点。随着压力增加,δ相在转向更高压力下70°C/GPa的正斜率之前,呈现出较小的负dT/dP斜率(高达约0.2 GPa)。通过特征分解产物的光谱特征以及固体KBr压力介质中捕获的包裹体的出现,确定了分解边界(约55°C/GPa)。