Enhancement of the thermoelectric performance of p-type layered oxide Ca3Co4O9+ through heavy doping and metallic nanoinclusions
Publication: Research - peer-review › Journal article – Annual report year: 2011
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Enhancement of the thermoelectric performance of p-type layered oxide Ca3Co4O9+ through heavy doping and metallic nanoinclusions. / Van Nong, Ngo; Pryds, Nini; Linderoth, Søren; Ohtaki, Michitaka.
In: Advanced Materials, Vol. 23, No. 21, 2011, p. 2484-2490.Publication: Research - peer-review › Journal article – Annual report year: 2011
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TY - JOUR
T1 - Enhancement of the thermoelectric performance of p-type layered oxide Ca3Co4O9+ through heavy doping and metallic nanoinclusions
A1 - Van Nong,Ngo
A1 - Pryds,Nini
A1 - Linderoth,Søren
A1 - Ohtaki,Michitaka
AU - Van Nong,Ngo
AU - Pryds,Nini
AU - Linderoth,Søren
AU - Ohtaki,Michitaka
PB - Wiley - V C H Verlag GmbH & Co. KGaA
PY - 2011
Y1 - 2011
N2 - An effective way to improve the thermoelectric performance (ZT) of layered structured oxide materials by carefully choosing heavy ion doping and introducing metallic nanoinclusions is proposed. A p-type oxide material with remarkable highly improved ZT is successfully fabricated using this approach. Long-term durability at high temperature testing confirms this material is a very promising p-type material for high temperature power generation.
AB - An effective way to improve the thermoelectric performance (ZT) of layered structured oxide materials by carefully choosing heavy ion doping and introducing metallic nanoinclusions is proposed. A p-type oxide material with remarkable highly improved ZT is successfully fabricated using this approach. Long-term durability at high temperature testing confirms this material is a very promising p-type material for high temperature power generation.
KW - Magnetic refrigeration
KW - Magnetisk køling
U2 - 10.1002/adma.201004782
DO - 10.1002/adma.201004782
JO - Advanced Materials
JF - Advanced Materials
SN - 0935-9648
IS - 21
VL - 23
SP - 2484
EP - 2490
ER -