The anelastic spectrum of ammonia borane (NH(3)BH(3)) was measured in the temperature range between 1.3 and 300 K. The structural phase transition near 220 K is accompanied by a substantial variation of the elastic modulus (25-30%) and a spike of the elastic energy dissipation. The order-disorder phase transformation that occurs with a minute hysteresis, 0.4 K between heating and cooling, is indicative of a first-order phase transformation with a narrow region of coexistence between the two phases. The kinetics of the transition was investigated in detail. In addition, a thermally activated relaxation peak is revealed around 100 K for a sample vibration frequency of similar to 1 kHz, which is attributed to the dynamics of the rotations and torsions of the NH(3)-BH(3) groups. Finally, the time-dependent energy loss on heating after aging the sample below the structural phase-transformation temperature was interpreted in terms of annealing of dislocations.

Hydrogen Dynamics and Characterization of the Tetragonal-to-Orthorhombic Phase Transformation in Ammonia Borane

Annalisa Paolone;Oriele Palumbo;
2009

Abstract

The anelastic spectrum of ammonia borane (NH(3)BH(3)) was measured in the temperature range between 1.3 and 300 K. The structural phase transition near 220 K is accompanied by a substantial variation of the elastic modulus (25-30%) and a spike of the elastic energy dissipation. The order-disorder phase transformation that occurs with a minute hysteresis, 0.4 K between heating and cooling, is indicative of a first-order phase transformation with a narrow region of coexistence between the two phases. The kinetics of the transition was investigated in detail. In addition, a thermally activated relaxation peak is revealed around 100 K for a sample vibration frequency of similar to 1 kHz, which is attributed to the dynamics of the rotations and torsions of the NH(3)-BH(3) groups. Finally, the time-dependent energy loss on heating after aging the sample below the structural phase-transformation temperature was interpreted in terms of annealing of dislocations.
2009
Istituto dei Sistemi Complessi - ISC
ANELASTIC SPECTROSCOPY
THERMAL-DECOMPOSITION
DIHYDROGEN BOND
STORAGE
BH3NH3
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/877
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