Publication | Open Access
Dynamics of Sodium in Sodium Disilicate: Channel Relaxation and Sodium Diffusion
127
Citations
17
References
2002
Year
Relaxation ProcessEngineeringComputational ChemistryMolecular DynamicsIon ProcessChannel RelaxationMolecular KineticsSodium DiffusionBiophysicsSolid-state IonicMolecular-dynamics Computer SimulationsPhysicsSodium HomeostasisAtomic PhysicsPhysical ChemistryQuantum ChemistrySio2 MatrixSodium DisilicateAb-initio MethodApplied PhysicsNa IonsMedicineChemical ThermodynamicsIon Structure
We use molecular-dynamics computer simulations to study the dynamics of amorphous (Na2O)2(SiO2). We find that the Na ions move in channels embedded in a SiO2 matrix. The characteristic distance between these channels gives rise to a prepeak in the structure factor at q approximately equal to 0.95 A(-1). The dynamics of sodium is given by a fast process which can be seen in the incoherent scattering function and a slow process which is seen in the coherent function. The relaxation time of the latter coincides with the alpha-relaxation time of the matrix. The Kohlrausch exponent of the fast process for q>1.6 A(-1) is the same as the von Schweidler exponent for the slow one. Thus the two processes are closely related.
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