Crystalline vanadium (II) fluoride, VF2. Preparation, structure, heat capacity from 5 to 300 °K and magnetic ordering
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.438115
Reference27 articles.
1. Heat capacity and entropy of MnF2 from 10 to 300 °K. Evaluation of the contributions associated with magnetic ordering
2. Heat Capacity and Entropy of FeF2 and CoF2 from 11 to 300°K. Thermal Anomalies Associated with Antiferromagnetic Ordering
3. Heat Capacity of NiF2from 12 to 300°K. Thermodynamic Functions of NiF2. The Thermal Anomaly Associated with the Antiferromagnetic Ordering
4. Heat Capacity of Zinc Fluoride from 11 to 300°K. Thermodynamic Functions of Zinc Fluoride. Entropy and Heat Capacity Associated with the Antiferromagnetic Ordering of Manganous Fluoride, Ferrous Fluoride, Cobaltous Fluoride, and Nickelous Fluoride
5. Heat capacity and entropy of CuF2 and CrF2 from 10 to 300 °K. Anomalies associated with magnetic ordering and evaluation of magnetic contributions to the heat capacity
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1. Magnetic properties of linear trimers in fluoride analogs of tetragonal tungsten bronze;Journal of Solid State Chemistry;2010-08
2. High-temperature DTA studies of AxMF3 compounds (, Rb, Cs; , Cr; and );Journal of Solid State Chemistry;2005-07
3. Electronic properties of the two rutiles TiO2 and VF2: A comparative study;Berichte der Bunsengesellschaft für physikalische Chemie;1998-12
4. Macro state Markov chain model for computer simulation of grand canonical ensemble;Molecular Physics;1994-06-10
5. Magnetic properties of the trirutile compound lithium manganese vanadium fluoride (LiMnVF6);Inorganic Chemistry;1985-02
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