Ab initio lattice dynamical studies of silicon clathrate frameworks and their negative thermal expansion
arXiv:1401.1153 · doi:10.1103/PhysRevB.89.024305
Abstract
The thermal and lattice dynamical properties of seven silicon clathrate framework structures are investigated with ab initio density functional methods (frameworks I, II, IV, V, VII, VIII, and H). The negative thermal expansion (NTE) phenomenon is investigated by means of quasiharmonic approximation and applying it to equal time displacement correlation functions. The thermal properties of the studied clathrate frameworks, excluding the VII framework, resemble those of the crystalline silicon diamond structure. The clathrate framework VII was found to have anomalous NTE temperature range up to 300 K and it is suitable for further studies of the mechanisms of NTE. Investigation of the displacement correlation functions revealed that in NTE, the volume derivatives of the mean square displacements and mean square relative displacements of atoms behave similarly to the vibrational entropy volume derivatives and consequently to the coefficients of thermal expansion as a function of temperature. All studied clathrate frameworks, excluding the VII framework, possess a phonon band gap or even two in the case of the framework V.
13 pages, 14 figures. Figures with better quality are included in the peer-reviewed manuscript (published in near future)
References in corpus (1)
Cited by in corpus (11)
- Thermal Expansion in Insulating Solids From First Principles
- Lattice Dynamics and Thermal Expansion Behavior in Metal Cyanides, MCN (M=Cu, Ag, Au): Neutron Inelastic Scattering and First Principles Calculations
- Ab initio studies on the lattice thermal conductivity of silicon clathrate frameworks II and VIII
- Many-body Green's function theory of electrons and nuclei beyond the Born-Oppenheimer approximation
- Ab initio computational study on the lattice thermal conductivity of Zintl clathrates [SiP]Cl and Na[AlSi]
- Exact factorization of the many-body Green's function theory of electrons and nuclei
- Quantum Field Theory of Electrons and Nuclei
- Phonons and Anomalous Thermal Expansion Behaviour in Crystalline Solids
- On the diagonalization of quadratic Hamiltonians
- On the breakdown of the Born-Oppenheimer approximation in LiH and LiD
- Beyond Born-Oppenheimer Green's function theories: absolute and relational