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A review on thermoelectric renewable energy: Principle parameters that affect their performance
被引:674
作者:
Elsheikh, Mohamed Hamid
[1
,3
]
Shnawah, Dhafer Abdulameer
[1
]
Sabri, Mohd Faizul Mohd
[1
]
Said, Suhana Binti Mohd
[2
]
Hassan, Masjuki Haji
[1
]
Bashir, Mohamed Bashir Ali
[1
]
Mohamad, Mahazani
[2
]
机构:
[1] Univ Malaya, Dept Mech Engn, Kuala Lumpur 50603, Malaysia
[2] Univ Malaya, Dept Elect Engn, Kuala Lumpur 50603, Malaysia
[3] Univ Bahri, Dept Mech Engn, Khartoum 13104, Sudan
关键词:
Thermoelectric materials;
Figure of merit;
Performance challenge;
THERMAL-STRESS ANALYSIS;
FIGURE-OF-MERIT;
P-TYPE;
N-TYPE;
RADIATION SENSOR;
HEAT-TRANSFER;
ELECTRICAL-RESISTIVITY;
RELIABILITY EVALUATION;
RAPID SOLIDIFICATION;
ELECTRONIC-STRUCTURE;
D O I:
10.1016/j.rser.2013.10.027
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Developing thermoelectric materials with superior performance means tailoring interrelated thermoelectric physical parameters - electrical conductivities, Seebeck coefficients, and thermal conductivities - for a crystalline system. High electrical conductivity, low thermal conductivity, and a high Seebeck coefficient are desirable for thermoelectric materials. Therefore, knowledge of the relation between electrical conductivity and thermal conductivity is essential to improve thermoelectric properties. In general, research in recent years has focused on developing thermoelectric structures and materials of high efficiency. The importance of this parameter is universally recognized; it is an established, ubiquitous, routinely used tool for material, device, equipment and process characterization both in the thermoelectric industry and in research. In this paper, basic knowledge of thermoelectric materials and an overview of parameters that affect the figure of merit ZT are provided. The prospects for the optimization of thermoelectric materials and their applications are also discussed. (C) 2013 Elsevier Ltd. All rights reserved.
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页码:337 / 355
页数:19
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