Journal Article

·1996

Structure of Partly Quenched Molten Copper Chloride

G. Pastore , H. Tatlipinar YTU , M. P. Tosi

Physics and Chemistry of Liquids

Abstract

Abstract The structural modifications induced in a model of molten CuCl by quenching the chlorine component into a microporous disordered matrix are evaluated using the hypernetted-chain closure in Ornstein-Zernike relations for the pair distribution functions in random systems. Aside from obvious changes in the behaviour of long-wavelength density fluctuations, the main effect of partial quenching is an enhanced delocalization of the Cu+ ions. The model suggests that the ionic mobility in a superionic glass is enhanced relative to the melt at the same temperature and density. Only very minor quantitative differences are found in the structural functions when the replica Onstein-Zernike relations derived by Given and Stell for a partly quenched system are simplified to those given earlier by Madden and Glandt.

Keywords

Chemistry Quenching (fluorescence) Copper Ionic bonding Thermodynamics Chemical physics Ion Condensed matter physics Physics

Subject Areas

Material Dynamics and Properties ·Materials Chemistry ·Physical Sciences
Glass properties and applications ·Ceramics and Composites ·Physical Sciences
Theoretical and Computational Physics ·Condensed Matter Physics ·Physical Sciences

Citations by Year

OpenAlex SDG Match

SDGs auto-classified by OpenAlex (score ≥ 0.4 shown).

Clean water and sanitation 51%