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Anomalous negative electrocaloric effect in a relaxor/normal ferroelectric polymer blend with controlled nano- and meso-dipolar couplings
Author(s) -
Xiaoshi Qian,
Tiannan Yang,
Tian Zhang,
LongQing Chen,
Qiming Zhang
Publication year - 2016
Publication title -
applied physics letters
Language(s) - English
Resource type - Journals
eISSN - 1077-3118
pISSN - 0003-6951
DOI - 10.1063/1.4944776
Subject(s) - electrocaloric effect , materials science , ferroelectricity , electric field , poling , dipole , isothermal process , dielectric , condensed matter physics , ferroelectric polymers , polymer , composite material , optoelectronics , thermodynamics , chemistry , physics , organic chemistry , quantum mechanics
In general, a dielectric material will eject (or absorb) heat when an electric field is applied and absorb (or eject) heat when the field is removed, under isothermal condition, which is known as the normal (or negative) electrocaloric (EC) effect. For some applications, it is highly desired that an EC material will absorb heat (cooling the surrounding) without subsequent heating under an electric pulse. Here, we show that such an EC material can be realized in a properly designed hybrid normal ferroelectric/relaxor ferroelectric polymer blend in which the normal ferroelectric component induces dipole ordering in the relaxor polymer in the poled state, which can be switched to a de-poled state by an external field. More importantly, the de-poled state can be maintained by the relaxor component when the de-poling field is removed. Consequently, the hybrid blend exhibits a large cooling (an isothermal entropy change ΔS = 11.5 J kg−1 K−1) without the subsequent heating upon the application of an electric pulse.

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