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热电材料是一种具有特殊意义的功能材料,它可以实现热能和电能的直接转换,因此对解决当前能源危机开辟了新的途径.综述了目前常用的制备纳米热电材料的湿化学方法,介绍了各种方法在热电材料形貌控制方面取得的进展,探讨了湿化学法中溶剂和表面活性剂对控制材料微观形貌方面的影响,在此基础上对湿化学方法制备纳米热电材料今后的研究方向进行了探讨.

参考文献

[1] Hicks L D;Dresselhaus M S .Effect of quantum-well structures on the thermoelectric figure of merit[J].Physical Review B:Condensed Matter,1993,47:12727.
[2] Hicks L D;Harman T C;Dresselhaus M S .Use of quantumwell superlattivces to obtain a high figure of merit from nonconventional thermoelectric materials[J].Applied Physics Letters,1993,63:3230.
[3] Bmido D A;Reinecke T L .Theory of thermoelectric power factor in quantum well and quantum wire superlattices[J].Physical Review B:Condensed Matter,2001,64:045324.
[4] Venkatasubramanian R et al.Thin-film thermoelectric devices with high room-temperature figures of merit[J].NATURE,2001,413:597.
[5] Harman T C;Spears D L;Manfra M J .High thermoelectric figures of merit in PbTe quantum well[J].Journal of Electronic Materials,1996,25:1121.
[6] 石尧文,乔冠军,金志浩.热电材料研究进展[J].稀有金属材料与工程,2005(01):12-15.
[7] 谢振,杨君友,樊希安,朱文,鲍思前,段兴凯.湿化学方法制备纳米Bi2Te3系热电材料的研究进展[J].材料导报,2006(z2):33-35.
[8] Zhang H T;Luo X G;Wang C H .Characterization of nanocrystalline bismuth telluride(Bi2 Te3)synthesized by a hydrothermal method[J].Journal of Crystal Growth,2004,265:558.
[9] Cui Hongmei;Liu Hong;Li Xia et al.Synthesis of Bi2 Se3 thermoelectric nanosheets and nanotubes through hydrothermal co-reduction method[J].Journal of Solid State Chemistry,2004,177:4001.
[10] Zhang Yunxia;Li Guanghai;Zhang Bo et al.Synthesis and characterization of hollow Sb2 Se3 nanospheres[J].Materials Letters,2004,58:2279.
[11] Wang Debao;Yu Dabin;Mo Maosong et al.Preparation and characterization of wire-like Sb2 Se3 and flake-like Bi2 Se3 nanocrystals[J].Journal of Crystal Growth,2003,253:445.
[12] Wei Guodan;Deng Yuan;Lin Yuanhua et al.Solvothermal synthesis of porous tellurium nanotubes[J].Chemical Physics Letters,2003,372:590.
[13] Zheng Y Y;Zhu T J;Zhao X B et al.Sonochemical synthesis of nanocrystalline Bi2 Te3 thermoelectric compounds[J].Materials Letters,2005,59:2886.
[14] Liu H;Cui HM;Han F;Li X;Wang JY;Boughton RI .Growth of Bi2Se3 nanobelts synthesized through a co-reduction method under ultrasonic irradiation at room temperature[J].Crystal growth & design,2005(5):1711-1714.
[15] Liao Xuehong;Wang Hui;Zhu Junjie et al.Preparation of Bi2 S3 nanorods by microwave irradiation[J].Materials Research Bulletin,2001,36:2339.
[16] Zhou B;Zhao Y;Pu L;Zhu JJ .Microwave-assisted synthesis of nanocrystalline Bi2Te3[J].Materials Chemistry and Physics,2006(2/3):192-196.
[17] Zhao Cui;Cao Xuebo;Lan Xianmei .Microwave-enhanced rapid and green synthesis of well crystalline Sb2 Se3 nanorods with a fiat cross section[J].Materials Letters,2007,61:5083.
[18] 吴会军,朱冬生,向兰.有机溶剂热法合成纳米材料的研究与发展[J].化工新型材料,2005(08):1-4.
[19] Wang Debao;Song Caixia;Fu Xun et al.Growth of one-dimensional Sb2 S3 and Sb2 Se3 crytals with straw-tied-like atchitectures[J].Journal of Crystal Growth,2005,281:611.
[20] Sun T;Zhao X B;Zhu T J et al.Aqueous chemical reduction synthesis of Bi2 Te3 nanowires with surfactant assistance[J].Materials Letters,2006,60:2534.
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