JOURNAL ARTICLE

Pyroelectric energy conversion using PLZT ceramics and the ferroelectric–ergodic relaxor phase transition

Felix Y. LeeHwan R. JoChristopher S. LynchLaurent Pilon

Year: 2013 Journal:   Smart Materials and Structures Vol: 22 (2)Pages: 025038-025038   Publisher: IOP Publishing

Abstract

This paper is concerned with direct conversion of waste heat into electricity by executing the Olsen cycle on lead lanthanum zirconate titanate (PLZT) ceramics undergoing a relaxor‐ferroelectric phase transition. The Olsen cycle consists of two isothermal and two isoelectric field processes. First, the temperature-dependent dielectric properties were measured for x/65/35 PLZT. The polarization transition temperature of x/65/35 PLZT was found to decrease from 240 to 10 C as x increased from 5 to 10 mol%. This suggests that the different compositions should be operated over different temperature ranges for maximum thermal to electrical energy conversion. The energy and power densities generated by the Olsen cycle using x/65/35 PLZT samples were measured by successively dipping the samples in isothermal dielectric oil baths. Large energy and power densities were obtained when the samples underwent the ergodic relaxor‐ferroelectric phase transition. A maximum energy density of 1014 J l 1 per cycle was obtained with a 190 m thick 7/65/35 PLZT sample cycled at 0.026 Hz between 30 and 200 C and between 0.2 and 7:0 MV m 1 . To the best of

Keywords:
Pyroelectricity Materials science Phase transition Ferroelectric ceramics Ferroelectricity Ceramic Relaxor ferroelectric Phase (matter) Condensed matter physics Optoelectronics Composite material Dielectric Chemistry Physics

Metrics

72
Cited By
7.54
FWCI (Field Weighted Citation Impact)
71
Refs
0.97
Citation Normalized Percentile
Is in top 1%
Is in top 10%

Citation History

Topics

Innovative Energy Harvesting Technologies
Physical Sciences →  Engineering →  Mechanical Engineering
Ferroelectric and Piezoelectric Materials
Physical Sciences →  Materials Science →  Materials Chemistry
Advanced Thermoelectric Materials and Devices
Physical Sciences →  Materials Science →  Materials Chemistry

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