清华大学材料学院博士生导师简介:李敬锋

2015-01-14 17:06:17来源:网络

清华大学材料学院博士生导师简介:李敬锋

  考博考生生准备要参加博士研究生考试时,必须要先确定准备攻读博士的相关专业,然后选择该专业有招生需求的学校,接下来应该联系博士生导师,只有当博士生导师同意考生报考,考博生才可以报考。所以提前了解博士生导师的学术文章及联系方式很重要,新东方在线特整理了各招收博士院校博导的简介及联系方式供考博生参考。

  

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  李敬锋

  清华大学材料学院教授,博士生导师,副院长

  教育部长江学者特聘教授,国家杰出青年基金获得者

  【联系方式】

  电子邮件:jingfeng@mail.tsinghua.edu.cn

  实验室:技科楼2406,2408,2410,2623

  联系电话:62784845,62789408

  个人主页:http://teacher.mse.tsinghua.edu.cn/lijf/

  教育背景

  1980.9-1984.7 华中科技大学机械工程2系金属材料及热处理专业学士学位

  1985.10-1991.3 日本东北大学(Tohoku University)工学部材料系,工学硕士(1988.3), 工学博士(1991.3)

  工作履历

  1991.3-1992.2 日本陶瓷技术株式会社特别研究人员(博士后)

  1992.3-2002.9 日本东北大学工学部材料系助手(1992-1997);副教授(1997-2002)

  2002.2- 清华大学材料科学与工程系教授,博士生导师,系副主任

  2013.1- 清华大学材料学院教授,博士生导师,副院长

  学术兼职

  《Journal of Materials Processing Technology》副主编(subject editor),《硅酸盐学报》副主编,《NPG Asia Materials》顾问编委,《Journal of Advanced Ceramics》、《Journal of Asia Ceramic Societies》、《Rare Metals》、《粉末冶金技术》编委、国际梯度功能材料顾问委员会理事,IEEE-TUFFC ferroelectric committee 委员,中国硅酸盐学会理事,中国硅酸盐学会薄膜与涂层分会副理事长,中国微米纳米技术学会理事,中国材料研究学会理事,中国材料研究学会热电材料与应用分会副主任委员,中国金属学会粉末冶金分会第六届委员会委员,湘潭大学兼职教授

  研究领域

  压电陶瓷与器件,热电材料与器件,MEMS材料技术,陶瓷复合材料及其力学性能

  [研究兴趣]:

  无铅压电陶瓷,压电陶瓷薄膜与MEMS微结构,压电复合材料,高性能热电半导体及其MEMS微型热电器件,功能梯度材料,复合陶瓷的强韧性,压电陶瓷的力学性能,高温力学性能

  【在研项目】:

  国家自然科学基金重点项目:无铅压电材料的多层次结构调控与表征技术(51332002)(2014.1-2018.12)

  国家自然科学基金面上项目:硫化锡的掺杂改性与纳米复合结构调控及其热电性能研究(51172121)(2012.1-2015.12)

  国家高技术研究发展计划(863计划):太阳能热电半导体发电系统示范(2012AA051104)(2012.1-2014.12)

  国家重点基础研究发展计划(973计划)课题:信息功能陶瓷微器件结构及其集成技术(2009CB623304)(2009.1-2013)

  国家自然科学基金委创新群体科学基金(骨干参加):信息功能陶瓷材料科学(51221291)

  国际合作研究(日本丰田汽车公司,2003-2013)

  奖励与荣誉

  1995年获日本金属学会青年研究者奖

  1998年获日本原田研究奖

  2003年获国家杰出青年科学基金

  2005年获清华大学“良师益友”称号

  2008年入选教育部长江学者特聘教授

  2010年获清华大学“纪念梅贻琦学术论文奖”二等奖

  2010年讲授的“MEMS材料及微细制备技术”获“清华大学精品课程”

  2011年获清华大学“纪念梅贻琦学术论文奖”二等奖

  2012年获2010年度北京市科学技术奖三等奖(高性能铌酸钾钠基无铅压电陶瓷的研发)

  2012年获2011年度北京市科学技术奖三等奖(高性能纳米复合结构热电材料与微器件技术)

  2012年获清华大学“纪念梅贻琦学术论文奖”二等奖

  2013年获清华大学“纪念梅贻琦学术论文奖”二等奖

  学术成果

  【已完成项目】:

  国家自然科学基金重大国际(地区)合作研究项目:高性能纳米复合热电材料(批准号:50820145203,合作)(2009.1-2012.12)

  国家自然科学基金海外及港澳学者合作研究基金(与美国匹兹堡大学王庆明教授):高频谐振器用压电薄膜的制备及取向与性能关系研究(51028202)

  清华大学自主科研计划课题:新型压电陶瓷材料及其微器件关键技术(20091081320)(2009.10-2011.12)

  国家自然科学基金面上项目:择优取向无铅压电陶瓷膜的制备及其性能研究(50772050)(2008.1-2010.12)

  国家自然科学基金面上项目:压电陶瓷微柱阵列/聚合物1-3型复合材料的形成与电学性能研究(批准号:50672040)(2007.1-2009.12)

  北京市自然科学基金面上项目:用于废热发电的高性能中温热电材料的研究(2072009)(2007-2009)

  教育部高等学校博士学科点专项科研基金:无铅压电薄膜的制备与结晶取向控制(20060003023)(2007。1-2009.12)

  国家杰出青年科学基金(无机非金属材料,压电陶瓷微结构及其微细制备技术)(2004.1-2007.12)

  集成信息功能陶瓷系统的基础问题研究(973项目,2002-2007)

  太阳能光电•热电及风力复合发电系统的基础与应用研究(国家自然科学基金重大国际(地区)合作研究项目,2003-2007)

  光驱动器梯度功能材料(国家自然科学基金专项基金项目, 2003.1-2003.12)

  微型热电器件的制备技术(教育部回国留学人员科研启动基金,2002-2004)

  热电纳米材料及其在温差电池上的应用(863项目, 2002-2005)

  新型三维结构刻蚀技术(MEMS-863,2003-2004)

  陶瓷/金属功能梯度压电驱动器的微结构设计与熔浸法制备研究(国家自然科学基金,2005)

  【论著与专利】

  主编:新材料概论(冶金工业出版社,2004),新能源材料及其应用技术(清华大学出版社,2005)

  参加编写:先进复合材料(机械工业出版社,2003),热电变换材料(日文,日刊工业新闻社,2005)

  Selected Papers

  [1] J.-F. Li, K. Wang, F.-Y. Zhu, L.-Q. Cheng and F.-Z. Yao, (K, Na)NbO3-Based Lead-Free Piezoceramics: Fundamental Aspects, Processing Technologies and Remaining Challenges, (feature article) Journal of the American Ceramic Society,96[12] 3677-3696 (2013).

  [2] J. H. Li, Q. Tan, J.-F. Li, D.-W. Liu, Z.-Y. Li, M. M. Zou, K. Wang, BiSbTe-Based Nanocomposites with High ZT: The SiCNanodispersion on Thermoelectric Properties, Advanced Functional Materials, 23, 4317-4323(2013).

  [3] K. Wang, F.-Z. Yao, W. Jo, D. Gobeljic, V. V. Shvartsman, D. C. Lupascu, J._F. Li, J. Rodel, Temperature-Insensitive (K, Na)NbO3-Based Lead-free Piezoactuator Ceramics, Advanced Functional Materials, 23, 4079-4086 (2013).

  [4] Z.-Y. Li and J.-F. Li, Fine-Grained and Nanostructured AgPbmSbTem+2 Alloys with High Thermoelectric Figure of Merit at Medium Temperature, Advanced Energy Materials, DOI: 10.1002/aenm.201300937.

  [5] Y.-L. Pei, J. Q. He, J.-F. Li, F. Li, Q. J. Liu, W. Pan, C. Barreteau, D. Berardan, N. Dragoe, L.-D. Zhao, High thermoelectric performance of oxyselenides: intrinsically low thermal conductivity of Ca-doped BiCuSeO, NPG Asia Materials, 5,e47(2013).

  [6] L.-Q. Cheng, K. Wang, J.-F. Li, Synthesis of Highly Piezoelectric Lead-Free (K, Na)NbO3 One-dimensional Perovskite Nanostructures, Chemical Communication, 49, 4003-4005(2013)

  [7] F.-Z. Yao, J. Glaum, K. Wang, W. Jo, J. Roedel, J.-F. Li, Fatigue-free unipolar strain behavior in CaZrO3 and MnO2 co-modified (K,Na)NbO3-based lead-free piezoceramics, Applied Physics Letters, 103, 192907(2013).

  [8] L. F. Zhu, B. P. Zhang, X. K. Zhao, L. Zhao, F.-Z. Yao, X. Han, P.-F. Zhou, J.-F. Li, Phase transition and high piezoelectricity in (Ba,Ca)(Ti1-xSnx)O3 lead-free ceramics, Applied Physics Letters, 103[7],072905(2013)

  [9] Q. Yu, J.-F. Li, W. Sun, Z. Zhou, Y. Xu, Z.-K. Xie, F.-P. Lai, Q.-M. Wang, Electrical properties of K0.5Na0.5NbO3 thin films grown on Nb:SrTiO3 single-crystalline substrates with different crystallographic orientations, Journal of Applied Physics, 113, 024101(2013).

  [10] F.-Z. Yao, K. Wang, J.-F. Li, Comprehensive Investigation of Elastic and Electrical Properties of Li/Ta-modified (K,Na)NbO3 lead-free Piezoceramics, Journal of Applied Physics,113, 174105 (2013).

  [11] F. Li, J.-F. Li, L.-D. Zhao, K. Xiang, Y. Liu, B.-P. Zhang, Y.-H. Lin, C.-W. Nan, H.-M. Zhu, Polycrystalline BiCuSeO oxide as a potential thermoelectric material, Energy & Environmental Science, 5, 7188-7195(2012).

  [12] Y. Xu, Q. Yu, J.-F. Li, A facile method to fabricate vertically aligned (K, Na)NbO3 lead-free piezoelectric nanorods,Journal of Materials Chemistry, 22(2012)23221.

  [13] Q. Yu, J.-F. Li, Z.-X. Zhu, Y. Xu, Q.-M. Wang, Shift of morphotropic phase boundary in high-performance [111]-oriented epitaxial Pb(Zr, Ti)O3 thin films, Journal of Applied Physics, 112, 014102(2012)

  [14] J.-J. Zhou, J.-F. Li, X.-W. Zhang, Orthorhombic to tetragonal phase transition due to stress release in (Li,Ta)-doped (K,Na)NbO3 lead-free piezoceramics, Journal of the European Ceramic Society, 32,267-270(2012)

  [15] Y. Liu, L.-D. Zhao, Y. Liu, J. Lan, W. Xu, F. Li, B.-P. Zhang, D. Berardan, N. Dragoe, Y.-H. Lin, C.-W. Nan, J.-F. Li, and H. Zhu, Remarkable Enhancement in Thermoelectric Performance of BiCuSeO by Cu Deficiencies, Journal of the American Chemical Society, 133, 20112-20115 (2011)

  [16] Z.-H. Ge, B.-P. Zhang, Y.-X. Chen, Z.-X. Yu, Y. Liu, J.-F. Li, Synthesis and transport property of Cu1.8S as a promising thermoelectric compound, Chemical Communication, 47, 12697–12699 (2011).

  [17] Z.-Y. Shen, J.-F. Li, R. M. Chen, Q. Zhou, K. K. Shung, Microscale 1-3-Type (Na,K)NbO3-Based Pb-Free Piezocomposites for High-Frequency Ultrasonic Transducer Applications, Journal of the American Ceramic Society, 94 [5] 1346-1349 (2011).

  [18] S. Y. Xu and J.-F. Li, Synthesis and Piezoelectricity of Single-Crystalline (K,Na)NbO3Nanobars, Journal of the American Ceramic Society, 94 [11] 3812-3818 (2011).

  [19] D.-W. Liu, J.-F. Li, Microfabrication of thermoelectric modules by patterned electrodeposition using a multi-channel glass template, Journal of Solid State Electrochemistry, 15[3] 479-484 (2011).

  [20] K. Wang, J.-F. Li, Domain Engineering of Lead-Free Li-Modified (K,Na)NbO3 Polycrystals with Highly Enhanced Piezoelectricity, Advanced Functional Materials, 20, 1924–1929 (2010).

  [21] J.-F. Li, W. S. Liu, L. D. Zhao, M. Zhou, High-performance nanostructured thermoelectric materials (review), NPG Asia Mater. 2152–158 (2010).

  [22] J.-F. Li, Z.-X. Zhu, and F.-P. Lai, Thickness-Dependent Phase Transition and Piezoelectric Response in Textured Nb-Doped Pb(Zr0.52Ti0.48)O3 Thin Films, J. Phys. Chem. C, 114, 41, 17796-17801(2010).

  [23] Z.-X. Zhu, J.-F. Li, Y. Y.Liu, J. Y. Li, Shifting of morphotropic phase boundary and superior piezoelectric response in Nb-doped Pb(Zr,Ti)O3 epitaxial thin films, ActaMaterialla, 57 (2009) 4288–4295

  [24] F. P. Lai, J.-F. Li, Z.-X. Zhu and Y. Xu, Influence of Li content on electrical properties of highly piezoelectric (Li, K, Na)NbO3 thin films prepared by sol-gel processing, Journal of Applied Physics, 106, 064101(2009).

  [25] Z.-Y. Shen, Y. Xu, and J.-F. Li, Fabrication and electromechanical properties of microscale 1-3-type piezoelectric composites using (Na,K)NbO3-based Pb-free piezoceramics, Journal of Applied Physics, 105, 104103 (2009).

  [26] L.D. Zhao, B.-P. Zhang, W.S. Liu, J.-F. Li, Effect of mixed grain sizes on thermoelectric performance of Bi2Te3 compound, Journal of Applied Physics, 105, 023704 (2009).

  [27] M. Zhou, J.-F. Li, T. Kita, Nanostructured AgPbmSbTem+2 system bulk materials with enhanced thermoelectric performance, Journal of the American Chemical Society, 130, 4527-4532 (2008).

  [28] W. S. Liu, B.-P. Zhang, L.-D. Zhao and J.-F. Li, Improvement of thermoelectric performance of CoSb3-xTexskutterudite compounds by additional substitution of IVB-group elements for Sb, Chemistry of Materials, 20, 7526-7531 (2008).

  [29] H. Wang, J.-F. Li, M. M. Zou, T. Sui, Synthesis and transport property of AgSbTe2 as a promising thermoelectric compound, Applied Physics Letters, 93, 202106 (2008)

  [30] W-S. Liu, L-D. Zhao, B.-P. Zhang, H.-L. Zhang, J.-F. Li, Enhanced thermoelectric property originating from additional carrier pocket in skutterudite compounds, Applied Physics Letters, 93, 042109 (2008).

  [31] K. Wang, J.-F. Li and N. Liu, Piezoelectric properties of low-temperature sintered Li-modified (Na, K)NbO3 lead-free ceramics, Applied Physics Letters, 93, 092904 (2008).

  [32] Y-R Zhang, J.-F. Li, B.-P. Zhang, C-E Peng, Piezoelectric and Ferroelectric Properties of Bi-Compensated (Bi1/2Na1/2)TiO3-(Bi1/2K1/2)TiO3 Lead-Free Piezoelectric Ceramics, Journal of Applied Physics, 103, 074109 (2008).

  [33] Y. H. Zhen, J.-F. Li, Preparation and Electrical Properties of Fine-Scale 1-3 PZT/Epoxy Composite Thick Films for High-Frequency Ultrasonic Transducers, Journal of Applied Physics, 103, 084119 (2008).

  [34] Z.-X. Zhu, C. Ruangchalermwong, and J.-F. Li, Thickness and Nb-doping effects on ferro- and piezoelectric properties of highly a-axis-oriented Nb-doped Pb(Zr0.3Ti0.7)O3 films, Journal of Applied Physics, 104, 054107 (2008).

  [35] D. W. Liu, J.-F. Li, Electro-crystallization process during deposition of Bi-Te films, Journal of The Electrochemical Society, 155(7), D493-D498 (2008).

  [36] L.-D. Zhao, B.-P. Zhang, J.-F. Li, M. Zhou, W.-S. Liu and J. Liu, Thermoelectric and mechanical properties of nano-SiC-dispersed Bi2Te3 fabricated by mechanical alloying and spark plasma sintering, Journal of Alloys and Compounds, 455, 259-264, (2008).

  [37] K. Wang, J.-F. Li, Analysis of crystallographic evolution in (Na,K)NbO3-based lead-free piezoceramics by x-ray diffraction, Applied Physics Letters, 91, 262902 (2007).

  [38] Z.-X. Zhu, J.-F. Li, F.-P. Lai, Y. Zhen, Y.-H. Lin, C.-W. Nan, L. T. Li, J. Y. Li, Phase structure of epitaxial Pb(Zr,Ti)O3 thin films on Nb-doped SrTiO3 substrates, Applied Physics Letters, 91, 222910 (2007).

  [39] W. S. Liu, B. P. Zhang, J.-F. Li, H.-L. Zhang, L. D. Zhao, Enhanced thermoelectric properties in CoSb3-xTex alloys prepared by mechanical alloying and spark plasma sintering, Journal of Applied Physics, 102, 103717 (2007).

  [40] Y. H. Zhen and J.-F. Li, Abnormal Grain Growth and New Core–Shell Structure in (K,Na)NbO3-Based Lead-Free Piezoelectric Ceramics, Journal of the American Ceramic Society, 90 [11] 3496-3502(2007)

  [41] P. Zhao, B.-P. Zhang, J.-F. Li, Enhancing piezoelectric d33 coefficient in Li/Ta–codoped lead–free (Na, K)NbO3 ceramics by compensating Na and K at a fixed ratio, Applied Physics Letters, 91, 172901 (2007).

  [42] P. Zhao, B.-P. Zhang, and J.-F. Li, High piezoelectric d33 coefficient in Li-modified lead-free (Na,K)NbO3 ceramics sintered at optimal temperature, Applied Physics Letters, 90, 242909 (2007).

  [43] H. L. Zhang, J.-F. Li, B.-P. Zhang, K. F. Yao, W.S. Liu, and H. Wang, Electrical and thermal properties of carbon nanotube bulk materials: Experimental studies for the 328–958 K temperature range, Physical Review B, 75,205407 (2007).

  [44] M. Zhou, L. D. Chen, C. D. Feng, D. L. Wang, J.-F. Li, Moderate-temperature thermoelectric properties of TiCoSb-based half-Heusler compounds Ti1-xTaxCoSb, Journal of Applied Physics, 101, 113714, (2007).

  [45] H. L. Zhang, J.-F. Li, B. P. Zhang, Microstructure and electrical properties of porous PZT ceramics derived from different pore-forming agents, ActaMaterialla 55 (1): 171-181 JAN 2007.

  [46] W. S. Liu, B. P. Zhang, J.-F. Li, L. D. Zhao, Thermoelectric property of fine-grained CoSb3 skutterudite compound fabricated by mechanical alloying and spark plasma sintering, Journal of Physics D- Applied Physics 40 (2): 566-572 (2007)

  [47] H. Wang, J.-F. Li, C.-W. Nan, M. Zhou, W.S. Liu, B.-P. Zhang and T. Kita, High-Performance Ag0.8Pb18+xSbTe20 thermoelectric bulk materials fabricated by mechanical alloying and spark plasma sintering, Applied Physics Letters, 88 (9) 092104 (2006).

  [48] J.-F. Li, K. Wang, B. P. Zhang, L. M. Zhang, Ferroelectric and piezoelectric properties of fine-grained Na0.5K0.5NbO3 lead-free piezoelectric ceramics prepared by spark plasma sintering, Journal of the American Ceramic Society 89[2] 706-709 (2006).

  [49] J.-F. Li and J. Liu, Effect of nano-SiC dispersion on thermoelectric properties of Bi2Te3 polycrystals, phys. stat. sol. (a) 203, No. 15, 3768–3773 (2006)

  [50] T. Itoh, S. Tanaka, J.-F. Li, M. Esashi, Silicon-carbide microfabrication by silicon lost molding for glass-press molds, Journal of Microelectromechanical Systems, 15[4] 859-863(2006),

  [51] Y. H. Zhen, J.-F. Li, Normal sintering of (K,Na)NbO3-based ceramics: Influence of sintering temperature on densification, microstructure, and electrical properties, Journal of the American Ceramic Society, 89[12], 3669-3675(2006).

  [52] H. L. Zhang, J.-F. Li and B.-P. Zhang, Sintering and Piezoelectric Properties of Co-Fired PZT/Ag Composites, Journal of the American Ceramic Society, 89[4]1300-1307(2006)

  [53] B.-P. Zhang, J.-F. Li, K. Wang, H. L. Zhang , Compositional Dependence of Piezoelectric Properties in NaxK1-xNbO3 Lead-Free Ceramics Prepared by Spark Plasma Sintering, Journal of the American Ceramic Society, 89[5] 1605-1609(2006)

  [54] W. Gong, J.-F. Li, C.-E Peng, Z. Gui and L. Li, In-Plane Aligned Pb(Zr, Ti)O3 Microbelts Fabricated by Near Migration and Restricted Growth, Advanced Materials, 17 (16): 1952+ (2005).

  [55] H. L. Zhang, J.-F. Li, K. F. Yao, L. D. Chen, Spark plasma sintering and thermal conductivity of carbon nanotube bulk materials, Journal of Applied Physics, 97, 114310(2005).

  [56] J.-F. Li, T. Matsuki, R. Watanabe, Combustion Reaction During Mechanical Alloying Synthesis of Ti3SiC2 Ceramics from 3Ti/Si/2C Powder Mixture, Journal of the American Ceramic Society 88 (5), 1318-1320(2005)

  [57] C. Peng, J.-F. Li, W. Gong, Preparation and properties of (Bi1/2Na1/2)TiO3-Ba(Ti,Zr)O3 lead-free diezoelectric ceramics, Materials Letters 59 (12), 1576-1580(2005).

  [58] W. Gong, J.-F. Li, X. C. Chu, Z. L. Gui, and L. T. Li, Preparation and characterization of sol-gel derived Pb(Zr,Ti)O3 thin films: PbO seeding effect on the formation of (001) preferential orientation, ActaMaterialia., 52[9], 2787-2793(2004)

  [59] W. Gong, J.-F. Li*, X. C. Chu, Z. L. Gui and L. T. Li , Combined effect of preferential orientation and Zr/Ti atomic ratio on electrical properties of Pb(ZrxTi1-x)O3 thin films, Journal of Applied Physics, 96 [1], 590-595(2004)

  [60] W. Gong, J.-F. Li*, X. C. Chu, Z. L. Gui and L. T. Li , Single-crystal Nb-doped Pb(Zr,Ti)O3 thin films on Nb-doped SrTiO3 waferswith different orientations,Applied Physics Letters,853818-3820(2004).

  [61] K. Takagi, S. Kikuchi, J.-F. Li*, et al., Ferroelectric and photostrictive properties of fine-grained PLZT ceramics derived from mechanical alloying, Journal of the American Ceramic Society, 87 (8): 1477-1482 (2004).

  [62] J.-F. Li, K. Takagi, B.-P. Zhang, Photovoltaic Property of Fine-Grained La-modified Lead ZirconateTitanate Ceramics Derived from Mechanically Alloyed Powder, Journal of Materials Science, 39[8]2879-2882(2004).

  [63] W. Gong, J.-F. Li*, X. C. Chu, Z. L. Gui and L. T. Li, Texture Control of Sol-Gel Derived Pb(Mg1/3Nb2/3)O3-PbTiO3 Thin Films Using Seeding Layer, Journal of the American Ceramic Society, 87 [6] 1031-1034(2004).

  [64] W. Gong, J.-F. Li, X. Chu and L. Li, Effect of Pyrolysis Temperature on Preferential Orientation and Electrical Properties of Sol-gel Derived Lead ZirconateTitanate Films, Journal of the European Ceramic Society, 24[10-11] 2977-2982(2004).

  [65] J.-F. Li, S. Tanaka, T. Umeki, S. Sugimoto, M. Esashi, R. Watanabe, Microfabrication of Thermoelectric Microdevices by Silicon Molding Process, SENSORS AND ACTUATORS A-PHYSICAL 108, 97-102 (2003).

  [66] J.-F. Li, W. Pan, F. Sato, R. Watanabe, 2001, Mechanical Properties of Polycrystalline Ti3SiC2 at Ambient and Elevated Temperatures, ActaMaterialia, 49,937-945 (2001).

  [67] J.-F. Li, K. Takagi, N. Terakubo, R. Watanabe, Electrical and mechanical properties of piezoelectric ceramic/metal composites in the Pb(Zr,Ti)O3/Pt system, Applied Physics Letters, 79, 2441-2443(2001).

  [68] J.-F. Li, S. Wang, K. Wakabayashi, M. Esashi, R. Watanabe,Properties of Modified Lead ZirconateTitanate Ceramics Prepared at Low Temperature (800℃) by Hot Isostatic Pressing Journal of the American Ceramic Society 83, 955-957(2000).

  [69] S. Wang, J.-F. Li, K. Wakabayashi, M. Esashi, R. Watanabe, Lost Silicon Mold Process for PZT Microstructures, Advanced Materials 11, 873-876(1999)

  [70] J.-F. Li and R. Watanabe, Phase Transformation in Y2O3-Partially Stabilized ZrO2Polycrystals of Various Grain Sizes during Low-Temperature Aging in Water, Journal of the American Ceramic Society, 81,2687-91 (1998).

  [71] J.-F. Li, A. Kawasaki and R. Watanabe, Hot-Isostatically Pressed SiC-AlN Powder Mixtures: The Effect of Milling on the Solid Solution Formation and Related Properties, Journal of the American Ceramic Society, 81, 1445-52 (1998).

  [72] J.-F. Li, R. Watanabe, B.-P. Zhang, K. Asami and K. Hashimoto, X-Ray Photoelectron Spectroscopic Investigation on the Low-Temperature Degradation of 2 mol%Y2O3-ZrO2 ceramics, Journal of the American Ceramic Society, 79, 3109-3112 (1996).

  [73] J.-F. Li, R. Watanabe, Fracture Toughness of Al2O3 Particle Dispersed Y2O3-Partially Stabilized Zirconia, Journal of the American Ceramic Society, 78, 1079-1082 (1995).

  [74] J.-F. Li and R. Watanabe, Preparation and Mechanical Properties of SiC-AlN Ceramic Alloy, Journal of Materials Science, 26, 4813-4817 ( 1991)

  [授权专利]

  [1] 具有微米级热电臂的微型热电元件的微加工方法, ZL200410038297.7

  [2] 一种氮化硅陶瓷部件的微加工方法,ZL200510011255.9

  [3] 钛酸铋钠-锆钛酸钡无铅压电陶瓷及其制备方法,ZL200410088425.9

  [4] 铌酸钾钠系无铅压电陶瓷及其制备方法,ZL200410068962.7

  [5] 一种压电陶瓷膜的制备方法, ZL200510063084.4

  [6] 一种纳米SiC/Bi2Te3基热电材料的制备方法, ZL200510130794.4

  [7] Ag-Pb-Sb-Te热电材料及其制备方法, ZL200510114218.0

  [8] 金属材料和陶瓷材料对称梯度复合材料的制备方法, ZL200610089765.2

  [9] 一种多孔压电陶瓷及其制备方法,ZL200610114599.7

  [10] 纳米SiC颗粒复合CoSb3基热电材料及其制备方法,ZL200610144006.1

  [11] 一种细晶择优取向 Bi2Te3 热电材料的制备方法,ZL200710175308.X

  [12] 一种提高Ag-Pb-Sb-Te热电材料性能的方法,ZL200810103887.1

  [13] 一种TiNiSn基热电化合物的制备方法,ZL200810119192.2

  [14] 一种四元方钴矿结构的热电材料及其制备方法,ZL200810119808.6

  [15] 一种提高Bi-S二元体系热电材料性能的方法,ZL200810211660.9

  [16] 一种制备具有高纵横比热电臂的微型热电器件的方法,ZL200810239624.3

  [17] 一种超微细压电陶瓷阵列结构复合材料及其制备方法,ZL200910076528.6

  [18] 一种Ag纳米颗粒复合CoSb3基热电材料的制备方法,ZL200810119809.0

  [19] 无铅压电陶瓷/聚合物1-3结构复合材料及其加工方法,ZL200810103886.7

  [20] 化合物熱電材料およびその製造方法,日本专利特许第4291842号

  [21] 太陽光熱複合発電システムにおける太陽熱集熱体および該太陽熱集熱体を利用した太陽光熱発電モジュール,2011年授权,日本专利特许第4878382号

  【研究组主要成员】

  职员:

  王轲(讲师),朱方圆(博士后),王馡丽(秘书)

  学生:

  李宗岳(D5),郁琦(D4),程丽乾(D4),谭晴(D3),刑志波(D3),姚方周(D3),孙伟(D2),魏天然(D2),吴超峰(D1),潘瑜(D1),周劲松(M1),曹玉超(M2,USTB),张瑞(M2,USTB),齐晓梅(M1,USTB)

  【工作或学习过的成员及其研究课题】

  职员:

  金松哲(访问学者,长春工业大学副教授,2003.10-2005.2,现长春工业大学教授):热电器件用梯度电极材料

  桑红毅(访问学者,中国农业大学理学院物理系,2008.9-2009.7):氧化物材料热电性质的研究

  张海龙(博士后,2003.9-2005.9,现北京科技大学):陶瓷/金属功能梯度压电驱动器的研究

  周敏(博士后, 2005.10-2007.9,现中科院理化技术研究所):高性能热电化合物材料

  沈宗洋(博士后,2008.2-2010.3,现景德镇陶瓷学院):铌酸钠钾基无铅压电陶瓷及其1-3复合材料制备及性能研究

  李建辉(博士后,2010.9-2012.12):热管理材料与高性能纳米复合热电材料

  张瑜(实验员+秘书,2007-2008),

  焦阳(实验员+秘书,2007.12-2009.5)

  王琳(秘书,2009.7-2011.12)

  赵金涛(实验员,2010.10-2011.2)

  博士生:

  龚文(博士,2002.9-2006.2):压电薄膜材料制备与性能研究

  甄玉花(博士,2004.9-2008.2):铌酸钾钠基无铅压电陶瓷及其1-3型压电复合材料的研究

  刘炜书(博士,BUST,2004-2008.10):CoSb3基材料的合成机理、微观结构与热电输运性能的研究

  赵立东(博士,BUST,2005-2008.10):碲化铋和硫化铋热电材料的制备与性能研究

  王轲(博士,2005.9-2010.2):铌酸钾钠基无铅压电陶瓷材料(获清华大学优秀博士论文)

  赖风平(博士,2005.9-2010.2):铌酸钾钠基无铅压电薄膜的制备与性能研究

  祝志祥(博士,2006.9-2010.2):织构及外延压电薄膜的化学法制备与性能研究

  刘大为(博士,2006.9-2011.6):热电模块的微型化及Bi2Te3基热电材料的相关制备技术

  徐莹(博士,2008.9-2012.6):无铅压电陶瓷有序复合微结构的制备和性能研究

  邹敏敏(博士,2008.9-2012.6):TiNiSn和FeVSb基半哈斯勒合金的制备与热电性能

  李甫(博士,2009.9-2013.1):低热导氧化物陶瓷的微结构调控及其热电性能研究

  周佳骏(博士,2010.9-2013.1):铌酸钾钠基无铅压电陶瓷的相结构和性能调控

  硕士生:

  刘静(硕士,2002.9-2005.7):碲化铋热电材料的制备及其微成型技术研究

  康妮(硕士,2003.9-2005.7):锆钛酸铅陶瓷厚膜电泳沉积技术研究

  程达明(硕士,2003.9-2005.7):PLZT光致伸缩陶瓷的制备及其性能与组分关系研究

  彭春娥(硕士,2004.9-2006.7):钛酸铋钠基无铅压电陶瓷的制备和性能

  王衡(硕士,2005.9-2008.7)AgPb18+xSbTe20高性能热电化合物的制备,结构表征及工艺优化(硕士论文,同时参加清华大学-东京工业大学双硕士学位培养项目)

  张怀全(硕士,2004.9-2006.7):金属/陶瓷梯度复合热电器件电极材料的制备

  隋涛(硕士,长春工大,2007.1-2008.7):金属与陶瓷梯度复合热电电极的制备

  及其与热电材料连接的研究

  张雅茹(硕士,北科大,2006.9-2007.12)NBT-KBT无铅压电陶瓷的制备和性能研究

  刘楠(M2,陕西师范大学, 2007.9-2009.6): 铌酸钾钠无铅压电陶瓷的水热制备和放电等离子烧结

  马宁(M2,北科大,2008.9-2010.6):ZnO基热电材料的制备及其性能研究

  陈晨(硕士,北科大,2009.9-2010.12):(Bi,Sb)2Te3基热电材料的制备及其性能研究

  于昭新(硕士,北科大,2010.9-2011.12):Ag0.8Pb22.5SbTe20基块体材料热电性能研究

  本科生:

  康妮(本科,2003.2-2003.7):PZT粉末电泳沉积微成型技术研究(综合论文训练)

  程达明(本科,2003.2-2003.7):改性锆钛酸铅陶瓷的光致伸缩效应研究(综合论文训练)

  赖风平(本科,2004.2-2004.7):铌酸盐体系无铅压电陶瓷薄膜的溶胶凝胶法制备(综合论文训练)

  彭春娥(本科,2004.2-2004.7):(Bi,Na)TiO3-BaTiO3体系压电陶瓷的制备与性能研究(综合论文训练)

  王衡(本科,2005.2-2005.7); Ag-Pb-Sb-Te系化合物的制备与热电性能评价(综合论文训练)

  刘大为(本科,2006.2-2006.7):利用MEMS及电化学工艺制作热电微结构(综合论文训练)

  霍沫霖(本科,2006.2-2006.7):Se掺杂Bi2Te3的MA-SPS制备及其热电性能研究(综合论文训练)

  何庆(本科,2006.2-2006.7):锆钛酸铅厚膜的电泳沉积制备及电学性能表征(综合论文训练)

  徐莹(本科,2007.2-2007.7):铌酸钾钠无铅压电陶瓷薄膜及其陈列的溶胶-凝胶法制备(综合论文训练)

  邹敏敏(本科,2007.2-2007.7):TiNiSn基half-Heusler化合物的制备及其热电性能的研究(综合论文训练)

  徐钰丰(本科,2007.2-2007.7):压电陶瓷厚膜的电泳沉积制备及性能研究(综合论文训练)

  杜冰(本科,2008.2-2008.7):利用机械合金化和放电等离子体烧结工艺制备单相TiNiSn热电材料(综合论文训练)

  郭沛君(本科,2009.2-2009.7):VFeSb基Half-Heusler化合物的制备及其热电性能(综合论文训练)

  胡永杰(本科,2010.2-2010.7):热导率温度相关性可控复合材料的设计与制备(综合论文训练)

  李天天(本科,2010.2-2010.7):硅片的纳米球光刻工艺研究(综合论文训练)

  徐思杨(本科,2010.2-2010.7):KNN基无铅压电氧化物纳米线的合成(综合论文训练)

  向凯(本科,2011.2-2011.7):BiCuSeO化合物的合成和热电性能研究(综合论文训练)

  谭晴(本科,2011.2-2011.7):SnS化合物的MA+SPS法合成及其热电性能的研究(综合论文训练)

  姚方周(本科,2011.2-2011.7):Li掺杂铌酸钾钠基无铅压电陶瓷结构与性能的调控(综合论文训练)

  孙伟(本科,2012.2-2012.7):硅片上择优取向BiFeO3薄膜的溶胶凝胶法制备(综合论文训练)

  许子豪(本科,2012.2-2012.7):铌酸钾钠无铅压电陶瓷的水热合成(综合论文训练)

  魏天然(本科,2012.2-2012.7):Sb2Se3和Cu3SbSe4热电材料制备与性能评价(综合论文训练)

  吴超峰(本科,2013.2-2013.7):PbSe热电材料制备及改性研究(综合论文训练)

  短期留学生:

  2007.8-2008.7,CharnwitRuangchalermwong,(博三,泰国Prince of Songkla University)

  2007.5-2007.8,Christy Hydrean& Fang Li,University of Pittsburgh

  博士后招聘信息

  随时招收博士若干名,从事压电陶瓷﹑热电材料﹑MEMS材料技术等方面的研究。

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