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Electrocaloric materials [electronic resource] : new generation of coolers

Electrocaloric materials [electronic resource] : new generation of coolers

자료유형
E-Book(소장)
개인저자
Correia, Tatiana. Zhang, Qi.
서명 / 저자사항
Electrocaloric materials [electronic resource] : new generation of coolers / Tatiana Correia, Qi Zhang, editors.
발행사항
Berlin ;   Heidelberg :   Springer Berlin Heidelberg :   Imprint: Springer,   2014.  
형태사항
1 online resource (viii, 253 p.) : ill. (some col.).
총서사항
Engineering materials,1612-1317 ; 34
ISBN
9783642402647
요약
Since the 1997 Kyoto protocol of reduction of greenhouse gas emissions, the development of novel refrigerators has been a priority within the scientific community. Although magnetocaloric materials are promising candidates, they still need a large magnetic field to induce a giant ΔT as well as powerful and costly magnets. However, in electrocaloric materials (ECMs) a temperature change may be achieved by applying or removing an electric field. Since a giant electrocaloric effect on ferroelectric thin films was reported in Science in 2006, researchers have been inspired to explore such effect in different ferroelectric thin films. This book reviews electrocaloric effects observed in bulk materials as well as recent promising advances in thin films, with special emphasis on the ferroelectric, antiferroelectric and relaxor nature of ECMs. It reports a number of considerations about the future of ECMs as a means of achieving an efficient, ecologically sustainable and low cost refrigerator.
일반주기
Title from e-Book title page.  
내용주기
Electrocaloric effect: An Introduction -- Constitutive Modeling of Electrothermal Properties in Polar Dielectric Materials and Thin Films -- Electrocaloric Effect in Relaxor Ferroelectric-based Materials -- Electrocaloric Effect in Multilayer Structures -- Electrocaloric Polymers -- Lead-free and exotic Electrocaloric Materials -- Indirect and Direct Measurements of the Electrocaloric Effect -- New Approaches to Electrocaloric-Based Multilayer Cooling -- Energy Harvesting from Temperature: use of Pyroelectric and Electrocaloric Properties.
서지주기
Includes bibliographical references.
이용가능한 다른형태자료
Issued also as a book.  
일반주제명
Systems engineering. Surfaces (Physics). Materials science.
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020 ▼a 9783642402647
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050 4 ▼a TA168
082 0 4 ▼a 620.11296 ▼2 23
084 ▼a 620.11296 ▼2 DDCK
090 ▼a 620.11296
245 0 0 ▼a Electrocaloric materials ▼h [electronic resource] : ▼b new generation of coolers / ▼c Tatiana Correia, Qi Zhang, editors.
260 ▼a Berlin ; ▼a Heidelberg : ▼b Springer Berlin Heidelberg : ▼b Imprint: Springer, ▼c 2014.
300 ▼a 1 online resource (viii, 253 p.) : ▼b ill. (some col.).
490 1 ▼a Engineering materials, ▼x 1612-1317 ; ▼v 34
500 ▼a Title from e-Book title page.
504 ▼a Includes bibliographical references.
505 0 ▼a Electrocaloric effect: An Introduction -- Constitutive Modeling of Electrothermal Properties in Polar Dielectric Materials and Thin Films -- Electrocaloric Effect in Relaxor Ferroelectric-based Materials -- Electrocaloric Effect in Multilayer Structures -- Electrocaloric Polymers -- Lead-free and exotic Electrocaloric Materials -- Indirect and Direct Measurements of the Electrocaloric Effect -- New Approaches to Electrocaloric-Based Multilayer Cooling -- Energy Harvesting from Temperature: use of Pyroelectric and Electrocaloric Properties.
520 ▼a Since the 1997 Kyoto protocol of reduction of greenhouse gas emissions, the development of novel refrigerators has been a priority within the scientific community. Although magnetocaloric materials are promising candidates, they still need a large magnetic field to induce a giant ΔT as well as powerful and costly magnets. However, in electrocaloric materials (ECMs) a temperature change may be achieved by applying or removing an electric field. Since a giant electrocaloric effect on ferroelectric thin films was reported in Science in 2006, researchers have been inspired to explore such effect in different ferroelectric thin films. This book reviews electrocaloric effects observed in bulk materials as well as recent promising advances in thin films, with special emphasis on the ferroelectric, antiferroelectric and relaxor nature of ECMs. It reports a number of considerations about the future of ECMs as a means of achieving an efficient, ecologically sustainable and low cost refrigerator.
530 ▼a Issued also as a book.
538 ▼a Mode of access: World Wide Web.
650 0 ▼a Systems engineering.
650 0 ▼a Surfaces (Physics).
650 0 ▼a Materials science.
700 1 ▼a Correia, Tatiana.
700 1 ▼a Zhang, Qi.
830 0 ▼a Engineering materials ; ▼v 34.
856 4 0 ▼u https://oca.korea.ac.kr/link.n2s?url=http://dx.doi.org/10.1007/978-3-642-40264-7
945 ▼a KLPA
991 ▼a E-Book(소장)

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