Ferroelectric molecular crystals are a promising class of materials with lower cost and environment-friendly preparation process. In this work, by combining first-principles calculations and molecular dynamics simulations, we report a systematic study of of ferroelectricity in three molecular ferroelectrics: di-isopropyl-ammonium chloride (DIPAC), di-isopropyl-ammonium bromide (DIPAB) and di-isopropyl-ammonium iodide (DIPAI). Our results agree with previous electronic structure calculations and provide new insights into the mechanism of the phase transition.

Molecular dynamics simulations of ferroelectricity in di-isopropyl-ammonium halide molecular crystals

Stroppa A
2019

Abstract

Ferroelectric molecular crystals are a promising class of materials with lower cost and environment-friendly preparation process. In this work, by combining first-principles calculations and molecular dynamics simulations, we report a systematic study of of ferroelectricity in three molecular ferroelectrics: di-isopropyl-ammonium chloride (DIPAC), di-isopropyl-ammonium bromide (DIPAB) and di-isopropyl-ammonium iodide (DIPAI). Our results agree with previous electronic structure calculations and provide new insights into the mechanism of the phase transition.
2019
Istituto Superconduttori, materiali innovativi e dispositivi - SPIN
Density functional theory
Ferroelectric molecular crystals
Ferroelectricity
Modern theory of polarization
Molecular dynamics simulations
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/365599
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