Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials

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Last updated 22 dezembro 2024
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Tetragonal Jahn-Teller distortion of the 2 E state in D 3 symmetry. The
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Projection of the structure of 1 in the ab plane at 120 K. Fe (yellow)
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Isothermal magnetization of 1 at 2, 5 and 10 K. The continuous line
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Publications - Shatruk Group - Florida State University
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
HF-EPR spectra of 1 (black: experiment, red: simulation) at 330 GHz
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Chiral, Three-Dimensional Supramolecular Compounds: Homo- and Bimetallic Oxalate- and 1,2-Dithiooxalate-Bridged Networks. A Structural and Photophysical Study
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
The potential f 0 V versus volume for G =−2/3 (thick curve) and G =
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
A) Diagram of the enantiomeric chiral polytopic organic ligand L 2
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
A). View of the crystal structure of [([K 6 (H 2 O) 6 ][Sb 12 O 18 ])
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
A) Structure of [Fe 3 F 6 (SO 4 ) 2 ]?C 6 N 4 H 22 , showing the
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
The structure of the functionalized-POM in compound 1. (Mn (pink), Mo
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
A) View of the crystal structure of Co 4 (SO 4 )(OH) 6 ?0.5C 6 N 2 H
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Chiral, Three-Dimensional Supramolecular Compounds: Homo- and Bimetallic Oxalate- and 1,2-Dithiooxalate-Bridged Networks. A Structural and Photophysical Study
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
A) Representation of the Fe-O 2-Fe-O 2-Fe chain (left) and the 2-D

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