Title of article :
Improvement of the fatigue and the ferroelectric properties of PZT films through a LSCO seed layer
Author/Authors :
Rodrigues، نويسنده , , Sofia A.S. and Silva، نويسنده , , José P.B. and Khodorov، نويسنده , , Anatoli and Martيn-Sلnchez، نويسنده , , Javier A. Pereira، نويسنده , , M. and Gomes، نويسنده , , M.J.M.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
6
From page :
1224
To page :
1229
Abstract :
The ability to optimizate the preparation of Lead Zirconate Titanate (PZT) films on platinized Si substrate by pulsed laser deposition was demonstrated. The effect of the modification of the interface film/electrode through the use of a (La,Sr)CoO3 (LSCO) seed layer on the remnant polarization, fatigue endurance and stress in PZT films was studied. An improvement on the ferroelectric properties was found with the using of the LSCO layer. A remnant polarization (Pr) of 19.8 μC/cm2 and 4.4 μC/cm2 for films with and without the LSCO layer were found. In the same way the polarization fatigue decreases significantly after deposition of the LSCO layer between the film and substrate. Atomic force microscopy (AFM) images revealed a different growth process in the films. Current–voltage (I–V) measurements showed that the use of LSCO seed layer improves the leakage current and, on the other hand the conduction mechanisms in the film without LSCO, after the fatigue test, was found to be changed from Schottky to Poole–Frenkel. The trap activation energy (about 0.14 eV) determined from Poole–Frenkel mode agrees well with the energy level of oxygen vacancies. The films stresses were estimated by XRD in order to explain the improvement on the structure and consequentially ferroelectric properties of the films. The model proposed by Dawber and Scott was found to be in agreement with our experimental data, which seems to predict that the oxygen vacancies play an important role on fatigue.
Keywords :
Pulsed laser deposition technique , PZT thin films , Ferroelectric properties , Fatigue
Journal title :
MATERIALS SCIENCE & ENGINEERING: B
Serial Year :
2013
Journal title :
MATERIALS SCIENCE & ENGINEERING: B
Record number :
2150917
Link To Document :
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