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同济大学材料科学与工程学院导师教师师资介绍简介-翟继卫

本站小编 Free考研考试/2021-01-12

姓名:翟继卫
职称:教授
电子邮箱:apzhai@tongji.edu.cn, zhaijiweitj@163.com
办公地点:上海市曹安公路4800号,同济大学嘉定校区,同心楼412室
电话:,**
传真:
课题组主页:jwzhailab.tongji.edu.cn

研究方向:
微波介质材料(包括LTCC材料)与器件
铁电、压电材料(包含薄膜材料)与器件
半导体合金薄膜材料与器件

学习工作经历:
学习经历
1984年7月本科毕业于新疆大学物理系物理专业,1987年7月硕士毕业于中国科学技术大学物理系固体物理专业,1997年12月博士毕业于西安交通大学电子与信息工程学院电子材料与元器件专业。

工作经历
1987年7月至1994年9月,任中国科学院新疆物理研究所助理研究员、副研究员。1998年1月至1999年12月,在同济大学功能材料研究所从事博士后研究。2000年1月加入同济大学功能材料研究所,2000年7月起任同济大学教授、博士生导师。

教学经历
2000年、2001年、2003年及2015年的3月至6月各指导1名本科生进行毕业设计(论文),其中两名学生的毕业设计(论文)获当年度校优秀毕业设计(论文)。指导的博士研究生已毕业21名,其中6名学生获同济大学优秀博士学位论文。指导的硕士研究生已毕业23名。有46人次获得各类面向研究生的奖学金及奖励。

国际交流
2001年9月至2011年,与香港城市大学City University of Hong Kong物理学与材料科学系开展为期10年的合作研究。2012年4月至7月赴美国科罗拉多州立大学Colorado State University物理系进行学术交流。2013年至今与澳门大学University of Macau建立开展科研合作。

科研工作
2003年以来负责科研项目20余项,包括973计划子课题3项、863计划子课题1项、国家自然科学基金项目5项、教育部项目5项、上海市项目5项、“十二五”国家科技计划1项等。在国际学术刊物上发表研究论文390篇,379篇己被SCI收录,3200余篇次被引用。获得中国发明专利授权77项。在学术会议担任分会主席及作邀请报告60余次。

在研项目
国家自然科学基金面上项目(**)、国家自然科学基金重点项目(**),教育部博士点基金-优先发展领域课题(No. 001),科技部“973”课题(2015CB654601)

学术任职:
现任《硅酸盐学报》编委及副主编,Journal of Advanced Dielectrics编委,上海市硅酸盐学会特种无机材料专业委员会委员,全国工业陶瓷标准化技术委员会功能陶瓷分技术委员会委员。Advanced Functional Materials、Journal of American Ceramic Society、Applied Physics Letter等学术刊物的论文评审人。

获奖情况:
1994年获中国科学院首批“西部之光”计划资助,2004年入选教育部新世纪优秀人才计划(NCET-04-0378),2005年入选上海市浦江人才计划(05PJ14094)。

授课情况:
本科生课程:无机功能材料
硕士研究生课程:电子陶瓷与工艺,固体物理-II
博士研究生课程:薄膜物理,材料的结构、性能与应用

代表性论文与著作:
1)He, ZF; Wu, PZ; Liu, RR; Zhai, JW; Lai, TS; Song, SN; Song, ZT; Superlattice-like SnSb4/Ge thin films for ultra-high speed phase change memory applications; CRYSTENGCOMM;18(7): 1230-1234 2016
2)Liu, SH; Xiu, SM; Shen, B; Zhai, JW; Kong, LB; Dielectric Properties and Energy Storage Densities of Poly(vinylidenefluoride) Nanocomposite with Surface Hydroxylated Cube Shaped Ba(0.6)Sr(0)ATiO(3) Nanoparticles; POLYMERS; 8(2): UNSP 45 FEB 2016
3)Liu, SH; Zhai, JW; Improving the dielectric constant and energy density of poly(vinylidene fluoride) composites induced by surface-modified SrTiO3 nanofibers by polyvinylpyrrolidone; JOURNAL OF MATERIALS CHEMISTRY A; 3(4):1511-1517 2015
4)Liu, SH; Xue, SX; Shen, B; Zhai, JW; Reduced energy loss in poly(vinylidene fluoride) nanocomposites by filling with a small loading of core- shell structured BaTiO3/SiO2 nanofibers; APPLIED PHYSICS LETTERS; 107(3): 032907 JUL 2015
5)Xue, SX; Liu, SH; Zhang, WQ; Shen, B; Zhai, JW; Correlation of energy conversion efficiency and interface polarization in niobate glass-ceramic for energy-storage applications; APPLIED PHYSICS LETTERS; 106(16): 162903 APR 2015
6)Bai, WF; Xi, JH; Zhang, J; Shen, B; Zhai, JW; Yan, HX; Effect of different templates on structure evolution and large strain response under a low electric field in <001>-textured lead-free BNT-based piezoelectric ceramics; JOURNAL OF THE EUROPEAN CERAMIC SOCIETY; 35(9):2489-2499 SEP 2015
7)Bai, WF; Liu, F; Li, P; Shen, B; Zhai, JW; Chen, HD; Structure and electromechanical properties in Bi0.5Na0.5TiO3-based lead-free piezoceramics with calculated end-member Bi(Ni0.5Ti0.5)O-3; JOURNAL OF THE EUROPEAN CERAMIC SOCIETY; 35(13): 3457-3466 NOV 2015
8)Hu, YF; Zhai, JW; Zeng, HR; Song, SN; Song, ZT; Improvement of reliability and power consumption for SnSb4 phase change film composited with Ga3Sb7 by superlattice-like method; JOURNAL OF APPLIED PHYSICS;117(17): 175704 MAY 7 2015
9)Li, P; Li, W; Zhai, JW; Shen, B ; Zeng, HR; Zhao, KY;Composition dependence of phase structure and electrical properties of BiMnO3-modified Bi-0.5(Na0.8K0.2)(0.5)TiO3 thin films; RSC ADVANCES; 5(77): 62713-62718 2015
10)Hao, XH; Zhai, JW; Kong, LB; Xu, ZK; A comprehensive review on the progress of lead zirconate-based antiferroelectric materials;PROGRESS IN MATERIALS SCIENCE; 63:1-57 JUN 2014
11)Hao, JG; Shen, B; Zhai, JW; Chen, HD; Effect of BiMeO3 on the Phase Structure, Ferroelectric Stability, and Properties of Lead-Free Bi0.5(Na0.80K0.20)0.5TiO3 Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 97(6): 1776-1784 JUN 2014
12)Li, W; Li, P; Zeng, HR;Hao, JG; Zhai, JW; Orientation dependence on piezoelectric properties of Bi0.5Na0.5TiO3-BaTiO3-SrTiO3 epitaxial thin films;APPLIED PHYSICS LETTERS; 104(17):172903 APR 28 2014
13)Tang, LJ; Bian, YL; Zhai, JW; Zhang, HJ; Ferroelectric-Dielectric Composites Model of Ba0.5Sr0.5TiO3/Mg(2)AO(4)(A = Ti, Si) for Tunable Application; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 97(3): 862-867 MAR 2014
14)Liu SH; Zhai JW; Wang JW; Xue SX; Zhang WQ; Enhanced Energy Storage Density in Poly(Vinylidene Fluoride) Nanocomposites by a Small Loading of Suface-Hydroxylated Ba0.6Sr0.4TiO3 Nanofibers; ACS APPLIED MATERIALS & INTERFACES; 6(3):533-1540 FEB 12 2014
15)Liu, SH; Xue, SX; Zhang, WQ; Zhai, JW;Chen, GH; Significantly enhanced dielectric property in PVDF nanocomposites flexible films through a small loading of surface-hydroxylated Ba0.6Sr0.4TiO3 nanotubes; JOURNAL OF MATERIALS CHEMISTRY A; 2(42): 18040-18046 NOV 2014
16)Bian, YL; Wu, C; Li, HQ; Zhai, JW; A tunable metamaterial dependent on electric field at terahertz with barium strontium titanate thin film; APPLIED PHYSICS LETTERS;104(4):042906 JAN 27 2014
17)Hao, XH; Zhai, JW; Electric-field tunable electrocaloric effects from phase transition between antiferroelectric and ferroelectric phase;APPLIED PHYSICS LETTERS; 104(2):022902 JAN 13 2014
18)Hu, YF; Feng, XY; Zhai, JW; Wen, T; Lai, TS; Song, SN; Song, ZT; Superlattice-like Ge8Sb92/Ge thin fins for high speed and low power consumption phase change memory application; SCRIPTA MATERIALIA; 93: 4-7 DEC 15 2014
19)Bai, WF; Li, LY; Li, W; Shen, B ; Zhai, JW; Chen, HD; Phase Diagrams and Electromechanical Strains in Lead-Free BNT-Based Ternary Perovskite Compounds; JOURNAL OF THE AMERICAN CERAMIC SOCIETY;97(11): 3510-3518 NOV 2014
20)Bai, WF; Bian, YL; Hao, JG; Shen, B;Zhai, JW; The Composition and Temperature-Dependent Structure Ev olution and Large Strain Response in (1-x)(Bi0.5Na0.5)TiO3-xBa(Al0.5Ta0.5)O3 Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY;96(1):246-252 JAN 2013
21)Tang, LJ; Wang, JW; Zhai, JW; Kong, LB ; Yao, X; Controllable-permittivity and high-tunability of Ba0.5Sr0.5TiO3/MgO based ceramics by composite configuration; APPLIED PHYSICS LETTERS;102(14): 142907 APR 8 2013
22)Hu, YF; Li, SM; Lai, TS; Song, SN; Song, ZT ; Zhai, JW; Al19Sb54Se27 material for high stability and high-speed phase-change memory applications; SCRIPTA MATERIALIA; 69(1): 61-64 JUL 2013
23)Sun, MC; Song, SN; Song, ZT; Zhai, JW; Liang, GF ; Wu, YQ; Phase-change behaviors of Sb80Te20/SbSe nanocomposite multilayer films; SCRIPTA MATERIALIA;68(7):522-525 APR 2013
24)Hao, JG; Shen, B; Zhai, JW; Liu, CZ ; Li, XL; Gao, XY; Switching of morphotropic phase boundary and large strain response in lead-free ternary (Bi0.5Na0.5)TiO3-(K0.5Bi0.5)TiO3-(K0.5Na0.5)NbO3 system; JOURNAL OF APPLIED PHYSICS;113(11):114106 MAR 21 2013
25)Hao, JG; Ye, CG; Shen, B; Zhai, JW; Enhanced electrostricitive properties and thermal endurance of textured (Bi0.5Na0.5)TiO3-BaTiO3-(K0.5Na0.5)NbO3 ceramics; JOURNAL OF APPLIED PHYSICS;114(5):054101 AUG 7 2013
26)Zhang, JJ; Shen, B; Zhai, JW; Yao, X; In situ synthesis of Ba0.5Sr0.5TiO3-Mg2TiO4 composite ceramics and their effective dielectric response; SCRIPTA MATERIALIA; 69(3):258-261 AUG 2013
27)Hu, YF; Feng, XY; Li, SM; Lai, TS; Song, SN; Song, ZT; Zhai, JW; Superlattice-like Sb50Se50/Ga30Sb70 thin films for high-speed and high density phase change memory application; APPLIED PHYSICS LETTERS;103(15):152107 OCT 7 2013
28)Hao, JG; Shen, B; Zhai, JW; Liu, CZ; Li, XL ; Gao, XY; Large Strain Response in 0.99(Bi0.5Na0.4K0.1)TiO3-0.01(KxNa1-x)NbO3 Lead-Free Ceramics Induced by the Change of K/Na Ratio in (KxNa1-x)NbO3; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 96(10):3133-3140 OCT 2013.
29)Zhang, QW; Zhai, JW; Zhang, HJ; Yao, X; Microstructure and dielectric property relationships in spherical inclusion ferroelectric composite ceramics; JOURNAL OF APPLIED PHYSICS;112(5 ):054101 SEP 1 2012
30)Zhang, QW; Zhai, JW; Ben, QQ; Yu, Xian; Yao, X; Enhanced microwave dielectric properties of Ba0.4Sr0.6TiO3 ceramics doping by metal Fe powders;JOURNAL OF APPLIED PHYSICS;112(10):104104 NOV 15 2012
31)Zhang, QW; Zhai, JW; Kong, LB; Yao, X;Investigation of ferroelectric phase transition for barium strontium titanate ceramics by in situ Raman scattering ; JOURNAL OF APPLIED PHYSICS; 112(12): 124112 DEC 15 2012
32)Qi P; Fan YC; Li HQ; Zhang QW, Zhai JW; Dielectric Properties of Ba0.7Sr0.3TiO3 Film at Terahertz Measured by Metamaterials; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 95(4):1167-1169 APR 2012
33)Hao JG; Bai WF; Li W; Zhai, JW; Correlation Between the Microstructure and Electrical Properties in High-Performance (Ba0.85Ca0.15)(Zr0.1Ti0.9)O-3 Lead-Free Piezoelectric Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 95(6):1998-2006 JUN 2012
34)Chen, HB; Shen, B; Xu, JB; Kong, LB; Zhai, JW; Correlation Between Grain Sizes and Electrical Properties of CaBi2Nb2O9 Piezoelectric Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 95(11):3514-3518 NOV 2012
35)Ye, CG; Hao, JG; Shen, B; Zhai JW,Large Strain Response in <001> Textured 0.79BNT-0.20BKT-0.01NKN Lead-Free Piezoelectric Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 95(11):3577-3581 NOV 2012
36)Hao XH; Zhai JW; Yue ZX; Xu JB; Phase Transformation Properties of Highly (100)-Oriented PLZST 2/85/12/3 Antiferroelectric Thin Films Deposited on Nb-SrTiO(3) Single-Crystal Substrates; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 94(9):2816-2818 SEP 2011
37)Wang CZ, Li SM, Zhai JW, Shen B, Sun MC, Lai TS; Rapid crystallization of SiO2/Sb80Te20 nanocomposite multilayer films for phase-change memory applications; SCRIPTA MATERIALIA; 64(7):645-648 APR 2011
38)Zhang QW, Zhai JW, Yao X; Dielectric and Percolative Properties of Ba0.5Sr0.5TiO3-Mg3B2O6 Composite Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 94(4):1138-1142 APR 2011
39)Zhang MW; Zhai JW; Shen B; Yao X; MgO Doping Effects on Dielectric Properties of Ba(0.55)Sr(0.45)TiO(3) Ceramics;JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 94(11):3883-3888 NOV 2011.
40)Zhang JJ, Zhai JW; Wang JY, Shao J, Lu X, Yao X; ,Infrared dielectric response and Raman spectra of tunable Ba0.5Sr0.5TiO3-Mg2TiO4 composite ceramics; JOURNAL OF APPLIED PHYSICS; 107(1):014106 JAN 1 2010
41)Hao XH; Zhai JW; Ren HP, Song XW, Yang JC;Fabrication and Tunable Dielectric Properties of Magnesium-Doped Lead Barium Zirconate Thin Films; JOURNAL OF THE AMERICAN CERAMIC SOCIETY;93(3):646-649 MAR 2010
42)Zhang L, Zhai JW, Mo WF, Yao X; Dielectrical and Magnetic Properties of CoFe2O4-BaTiO(3)Composite Films Prepared by a Combined Method of Sol-Gel and Electrophoretic Deposition,JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 93(10):3267-3271 OCT 2010
43)Shang F, Zhai JW, Song SN, Song ZT, Wang CZ; Performa nce improvement of phase change memory cell by using a cerium dioxide buffer layer; APPLIED PHYSICS LETTERS; 96(20):203504 MAY 17 2010
44)Zhang QW, Zhai JW, Yao X; Low Loss, High Tunability of Ba0.4Sr0.6TiO3-Mg3B2O6 Microwave Composite Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY;93(9): 2560-2562 SEP 2010
45)Zhang QW, Zhai JW, Kong LB,Yao X; Percolative properties in ferroelectric-dielectric composite ceramics; APPLIED PHYSICS LETTERS;97(18):182903 NOV 1 2010
46)Zhang JJ, Zhai JW, Yao X.; Dielectric tunable properties of low-loss Ba0.4Sr0.6Ti1-yMnyO3 ceramics; Scripta Materialia;61(7):764-767 OCT 2009
47)Zhang JJ, Zhai JW, Chou XJ, Shao J, Lu X, Yao X; Microwave and infrared dielectric response of tunable BST ceramivs; Acta Materialia; 57(15): 4491-4499 SEP 2009
48)Hao XH, Zhai JW, Yao X; Dielectric Properties of Pb0.97La0.02(Zr0.87-xSnxTi0.13)O3 Thin Films with Compositions near the Morphotropic Phase Boundary; JOURNAL OF THE AMERICAN CERAMIC SOCIETY;92(1):286-288 JAN 2009
49)Hao XH, Zhai JW, Yao X; Improved Energy Storage Performance and Fatigue Endurance of Sr-Doped PbZrO3 Antiferroelectric Thin Films; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 92(5):1133-1135 MAY 2009
50)Hao XH, Zhai JW, Song XW, Yang JC, Ren HP; Fabrication and Characterization of Sol-Gel Derived (100)-Textured (Pb0.97La0.02)(Zr0.95Ti0.05)O-3 Thin Films; JOURNAL OF THE AMERICAN CERAMIC SOCIETY;92(12):3081-3083 DEC 2009
51)Song SN, Zhai JW, Gao LN, Yao X; The effect of stress on the dielectric and tunable properties of barium stannate titanate thin films; APPLIED PHYSICS LETTERS; 94(5):052902 FEB 2 2009
52)Jiang HT, Zhai JW, Yao X; Microwave dielectric properties of BaTiO3-SrZnP2O7 composite ceramics for tunable microwave applications; JOURNAL OF PHYSICS D-APPLIED PHYSICS; 42(22): 225404 NOV 21 2009
53)Jiang HT, Zhai JW, Zhang JJ, Yao X; Microwave Dielectric Properties and Low-Temperature Sintering of Ba0.60Sr0.40TiO3 Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY;92(10):2319-2322 OCT 2009
54)Zhang L, Zhai JW, Yao X;Dielectric Properties of Electrophoretically Deposited and Isothermally Pressed BaTiO3 Thick Films;JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 91( 6):2075-2077 JUN 2008
55)Hao XH, Zhai JW, Yao X; Delectric Tunable Properties and Relaxor Behavior of (Pb0.5Ba0.5)ZrO3 Thin Films;JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 91(12):4112-4114. DEC 2008
56)Xu, JB; Shen, B; Gao, LN; Zhai, JW; Yao, X; Ethanol-Assisted Synthesis of BaZrxTi1-xO3 Ferroelectric Thin Film under Low-Temperature Conditions; Crystal Growth & Design; 8(5):1766-1769 MAY 2008
57)Gao LN, Zhai JW, Yao X, Xu ZK; MgTiO3 and Ba0.60Sr0.40Mg0.15Ti0.85O3 composite thin films with promising dielectric properties for tunable applications; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 91( 9):3109-3112 SEP 2008
58)Zhang JJ, Zhai JW, Chou XJ, Yao X; Dielectric Abnormities in Ba0.6Sr0.4TiO3–MgAl2O4 Composite Ceramics; JOURNAL OF THE AMERICAN CERAMIC SOCIETY;91(1):3258-3262 OCT 2008
59)Chou, XJ; Zhai, JW; Yao, X; Dielectric tunable properties of low dielectric constant Ba0.5Sr0.5TiO3-Mg2TiO4 microwave composite ceramics; APPLIED PHYSICS LETTERS;91(12):122908 SEP 17 2007
60)Xu, JB; Zhai, JW; Yao, X; Structure and dielectric properties of barium titanate thin films grown by sol-gel-hydrothermal process; APPLIED PHYSICS LETTERS; 89(25):252902 DEC 18 2006
61)Xu, ZK; Zhai JW;Chan, WH; Chen, HD;Phase transformation and electric field tunable pyroelectric behavior of Pb(Nb,Zr,Sn,Ti)O-3 and (Pb,La)(Zr,Sn,Ti)O-3 antiferroelectric thin films; APPLIED PHYSICS LETTERS; 88(13):132908 MAR 27 2006
62)Shen, B; Zhai JW; Yao, X; Dielectric relaxation and tunability of Bi2O3-ZnO-CaO-Ta2O5 ceramics; APPLIED PHYSICS LETTERS;86(7):072902 FEB 14 2005
63)Zhai JW; Hung, TF; Chen, HD; Relaxor and nonlinear behaviors of SrTiO3/BaTiO3 multilayers derived by a sol-gel process;APPLIED PHYSICS LETTERS; 85(11):2026-2028 SEP 13 2004
64)Zhai JW; Yao, X; Zhang, LY; Shen, B;Dielectric nonlinear characteristics of Ba(Zr0.35Ti0.65)O-3 thin films grown by a sol-gel process;APPLIED PHYSICS LETTERS;84(16):3136-3138 APR 19 2004
65)Zhai JW; Chen, HD; Nonlinear behaviors of the compositionally graded (Ba,Sr)TiO3 thin films derived by a sol-gel process;APPLIED PHYSICS LETTERS;84(7):1162-1164 FEB 16 2004
66)Zhai JW; Chen, HD; Electric fatigue in Pb(Nb,Zr,Sn,Ti)O-3 thin films grown by a sol-gel process; APPLIED PHYSICS LETTERS; 83(5): 978-980 AUG 4 2003
67)Zhai JW; Chen, HD; Direct current field and temperature dependent behaviors of antiferroelectric to ferroelectric switching in highly (100)-oriented PbZrO3 thin films;APPLIED PHYSICS LETTERS;82(16): 2673-2675 APR 21 2003
68)Zhai JW; Chen, HD; Ferroelectric properties of Bi3.25La0.75Ti3O12 thin films grown on the highly oriented LaNiO3 buffered Pt/Ti/SiO2/Si substrates; APPLIED PHYSICS LETTERS; 82(3) :442-444 JAN 20 2003
69)Zhai JW; Cheung, MH; Zheng, KX; Xin, L; Chen, HD; Colla, EV; Wu, TB; Dielectric and ferroelectric properties of highly oriented (Pb,Nb)(Zr,Sn,Ti)O-3 thin films grown by a sol-gel process;APPLIED PHYSICS LETTERS;81(19):3621-3623 NOV 4 2002
70)Chou, XJ; Zhai, JW; Yao, X; Relaxor behavior and dielectric properties of MgTiO3-Doped BaZr0.35Ti0.65O3 composite ceramics for tunable applications; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 90(9):2799-2801 SEP 2007
71)Zhai JW; Yao, X; Xu, Z; Chen, H; Effect of orientation on the ferroelectric behavior of (Pb,Sr) TiO3 thin films; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 89(1):354-357 JAN 2006
72)Zhai JW; Shen, B; Yao, X; Zhang, LY; Dielectric properties of Ba(SnxTi1-x)O-3 thin films grown by a sol-gel process; JOURNAL OF THE AMERICAN CERAMIC SOCIETY; 87(12):2223-2227 DEC 2004



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