The heat capacity of the layer compounds (CH3CH2CH2NH3)2MnCl4 and (CH3CH2CH2NH3)2CdCl4 from 10 K TO 300 K
Author:
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Reference21 articles.
1. White M. A., Granville N. W. and Staveley L. A. K., J. Phys. Chem. Solids, to be published.
2. Crystal Structure of (CH3CH2CH2NH3)2MnCl4
3. New phase transition in (CnH2n+1NH3)2MnCl4
4. Differential scanning calorimetry of phase transitions in (CnH2n+1NH3)2MnCl4 compounds
5. Phases and phase transitions of compounds (CnH2n+1NH3)2MnCl4 with n = 1, 2, 3
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1. Structures and phase transitions of (BrCH2CH2NH3)2CdBr4 and (BrCH2CH2CH2NH3)2CdBr4 as investigated by 81Br NQR, DTA, and single-crystal X-ray diffraction;Zeitschrift für Naturforschung B;2020-02-24
2. Preparation, Thermal, and Physical Properties of Perovskite-Type (C3H7NH3)2CdCl4 Crystals;Crystals;2019-02-19
3. Heat Capacities and Entropies of Organic Compounds in the Condensed Phase. Volume III;Journal of Physical and Chemical Reference Data;1996-01
4. Birefringence of low-temperature phases of ferroelastic bis (n-propylammonium) tetrachlorocadmate;Ferroelectrics;1992-01
5. Structural phase transition in the perovskite-type layer compound (C3H7NH3)2PbCl4;Physica Status Solidi (a);1989-09-16
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