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Integrated Ferroelectrics
An International Journal
Volume 167, 2015 - Issue 1
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Original Articles

Pyroelectric Energy Harvesting Using (Ba0.85Ca0.15) (Zr0.1Ti0.89Fe0.01)O3 Ceramics

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Pages 176-183 | Received 24 Aug 2015, Accepted 24 Aug 2015, Published online: 21 Dec 2015

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Read on this site (3)

Sarita Sharma, Revti Nandan, Jyoti Shah, Ravinder Kumar Kotnala & Nainjeet Singh Negi. (2022) Phase evolution and enhanced electrical properties in Ba0.85Ca0.15Zr0.10Ti0.90O3 lead-free ceramics prepared at different sintering temperatures. Phase Transitions 95:8-9, pages 609-625.
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Moolchand Sharma, Shatrughan Singh & Bhim Singh. (2018) Pyroelectric performance of (Ba0.825+xCa0.175-x)(Ti1-xSnx)O3 lead free ceramics. Ferroelectrics Letters Section 45:4-6, pages 76-83.
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Shatrughan Singh, K. S. Srikanth & Bhim Singh. (2018) Pyroelectric performance of [(1-x)Ba0.9Ca0.1TiO3-x(BaSn0.2Ti0.8O3)] lead free ceramics. Ferroelectrics 526:1, pages 68-75.
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Articles from other publishers (5)

K. S. Srikanth, V. P. Singh, Satyanarayan Patel & Rahul Vaish. (2019) Pyroelectric performance of [Bi0.48Na0.4032K0.0768]Sr0.04(Ti0.975Nb0.025)O3 ceramics. Journal of the Australian Ceramic Society 56:2, pages 395-402.
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Yang Bai, Heli Jantunen & Jari Juuti. (2018) Energy Harvesting Research: The Road from Single Source to Multisource. Advanced Materials 30:34, pages 1707271.
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Keshavmurthy Srikanth, Satyanarayan Patel & Rahul Vaish. (2018) Pyroelectric performance of BaTi 1-x Sn x O 3 ceramics . International Journal of Applied Ceramic Technology 15:2, pages 546-553.
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Jiagang WuJiagang Wu. 2018. Advances in Lead-Free Piezoelectric Materials. Advances in Lead-Free Piezoelectric Materials 463 522 .
Puneet Azad & Rahul Vaish. (2017) Portable triboelectric based wind energy harvester for low power applications. The European Physical Journal Plus 132:6.
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