Nuclear magnetic resonance for differentiating two inequivalent M sites in double anhydrous M 2 CuCl 4 ( M = K, Cs, and NH 4 ) single crystals
Author:
Funder
National Research Foundation of Korea
Ministry of Education, Science, and Technology
Publisher
Elsevier BV
Subject
Condensed Matter Physics,General Materials Science,General Chemistry
Reference25 articles.
1. Hard-core boson approach to thespin−12triangular-lattice antiferromagnetCs2CuCl4at finite temperatures in magnetic fields higher than the saturation field
2. High-field magnetic resonance of spinons and magnons in the triangular latticeS=12antiferromagnetCs2CuCl4
3. Raman scattering in a HeisenbergS=12antiferromagnet on the anisotropic triangular lattice
4. The electronic structure of organic–inorganic hybrid compounds: (NH4)2CuCl4, (CH3NH3)2CuCl4and (C2H5NH3)2CuCl4
5. Studies of absorption spectra of A2MCl4(M=Cu, Co) crystals with organic cations
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1. Structures, local symmetries, and paramagnetic effects in Cs2Zn1-Cu Cl4 (y = 0, 0.3, 0.5, 0.7, and 1) mixed crystals by solid-state NMR;Journal of Molecular Structure;2021-03
2. Tetragonal-orthorhombic-tetragonal phase transitions in organic-inorganic perovskite-type (CH 3 NH 3 ) 2 MnCl 4;Solid State Communications;2017-11
3. Structural phase transitions and ferroelastic properties of perovskite-type layered (CH3NH3)2CdCl4;Journal of Applied Physics;2017-06-07
4. Structural Phase Transition of Perovskite-Type N(CH3)4CdBr3 Studied by MAS NMR and Static NMR;Applied Magnetic Resonance;2017-02-01
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