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 12 abril 2025
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
A) Fe-F-Fe connected trimeric cluster in [Fe 3 F 2 (PO 4 ) 3 ]?C 4 N 2
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Color online) Distribution of the local pressure for the HS molecules
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
The free energy fT , V of Eq. (20) is plotted for a series of
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
A) View of the cavities shown in the inorganic layer in [Fe 5 F 3 (PO
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
Two behaviors of small hysteresis width of around 5 K as observed
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
PDF] Energy migration within the 2E state of Cr3
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
a Luminescence spectrum of Rhbpy 3 NaCrox) 3 ClO 4 in the region of the
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
PDF) Monte-Carlo Simulations of Spin-Crossover Phenomena Based on a Vibronic Ising-like Model with Realistic Parameters
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
Université de Genève - Groupe du Professeur Andreas Hauser
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
EPR spectra of [Zn 1−x Co x (bpy) 3 ][LiRh(ox) 3 ], x = 0.01, at
Combined Experimental and Mechanoelastic Modeling Studies on the Low-Spin  Stabilized Mixed Crystals of 3D Oxalate-Based Coordination Materials
Polymeric Two- and Three-Dimensional Transition-Metal Networks. Crystal Structures and Magnetic Properties: Molecular Crystals and Liquid Crystals Science and Technology. Section A. Molecular Crystals and Liquid Crystals: Vol 273, No 1

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