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Updated: Jan 9, 2026

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Remarkable impact of KBr pelletization on spin switching: probing Hofmann-type 3D spin-crossover frameworks by
Chinmoy Das1, Pradip Chakraborty1,2
1Department of Chemistry, Indian Institute of Technology Kharagpur, Kharagpur-721302, India. pradipc@chem.iitkgp.ac.in.
None:
KBr pelletization profoundly influences the thermal and photoinduced spin-crossover behavior in dehydrated [Fe1-xMx(pz)Pd(CN)4] in bulk, nanoparticles and polymer composite forms by inducing tensile strain, defects, dopant-rattling, and electrostatic perturbations that alter ΔE0HL and cooperativity. It enables hidden thermal switching, dopant dynamics, and quantum-tunneling-driven LIESST relaxation, revealing mechanical processing as a versatile tool to tune spin-state energetics and cooperativity.
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