Solid State Physics Division, Bhabha Atomic Research Centre, Trombay, Mumbai, India.
J Phys Condens Matter. 2012 Dec 19;24(50):505404. doi: 10.1088/0953-8984/24/50/505404. Epub 2012 Nov 23.
Recently colossal volume thermal expansion has been observed in the framework compounds Ag(3)Co(CN)(6) and Ag(3)Fe(CN)(6). We have measured phonon spectra using neutron time-of-flight spectroscopy as a function of temperature and pressure. Ab initio calculations were carried out for the sake of analysis and interpretation. Bonding is found to be very similar in the two compounds. At ambient pressure, modes in the intermediate frequency part of the vibrational spectra in the Co compound are shifted slightly to higher energies as compared to the Fe compound. The temperature dependence of the phonon spectra gives evidence for a large explicit anharmonic contribution to the total anharmonicity for low-energy modes below 5 meV. We have found that modes are mainly affected by the change in size of the unit cell, which in turn changes the bond lengths and vibrational frequencies. Thermal expansion has been calculated via the volume dependence of phonon spectra. Our analysis indicates that Ag phonon modes within the energy range 2-5 meV are strongly anharmonic and major contributors to thermal expansion in both systems. The application of pressure hardens the low-energy part of the phonon spectra involving Ag vibrations and confirms the highly anharmonic nature of these modes.
最近在框架化合物 Ag(3)Co(CN)(6) 和 Ag(3)Fe(CN)(6) 中观察到了巨大的体积热膨胀。我们已经使用中子飞行时间光谱法测量了声子谱作为温度和压力的函数。为了分析和解释,进行了从头算计算。发现两种化合物的键合非常相似。在环境压力下,与 Fe 化合物相比,Co 化合物振动光谱中频部分的模式略微向高能移动。声子谱的温度依赖性表明,对于低于 5 meV 的低能模式,总非谐性中有很大的显式非谐贡献。我们发现模式主要受单元胞尺寸变化的影响,这反过来又改变了键长和振动频率。通过声子谱的体积依赖性计算了热膨胀。我们的分析表明,能量范围在 2-5 meV 之间的 Ag 声子模式是非谐性很强,是两个系统热膨胀的主要贡献者。施加压力会使涉及 Ag 振动的低能部分声子谱变硬,并证实这些模式具有高度的非谐性。