胡志高

胡志高

胡志高,男,華東師範大學信息科學技術學院電子工程系教授,博士生導師,現任電子工程系系主任。從事光電子材料、器件與物理,半導體材料及其低維結構的光學與電子性質等方面研究。

基本信息

胡志高

男,華東師範大學信息科學技術學院電子工程系教授,博士生導師

研究方向

光電子材料、器件與物理

半導體材料及其低維結構的光學與電子性質

胡志高老師近照 胡志高老師近照

鐵電以及鐵磁極化材料的光電特性等社會兼職

德國洪堡學者(Humboldt Fellow)‚兼任《Advanced Materials》、《Physical Review Letters》以及《Physical Review B》等國際著名學術期刊的評審員。

學術成果

2004年3月在中國科學院上海技術物理研究所獲理學博士學位‚導師褚君浩院士。2004年3月至2007年2月分別在美國喬治亞州州立大學(Georgia State University)和德國海德堡大學(University of Heidelberg)從事博士後研究工作。2007年4月起任華東師範大學信息科學技術學院教授‚博士生導師‚現任電子工程系系主任。在PRB、APL以及JAP等著名期刊上發表SCI收錄國際學術刊物論文80多篇(其中影響因子3.0以上有24篇)‚引用近200次‚其中他引100多次。出版國際英文學術專著章節2章。2007年入選上海市"浦江人才計畫"‚2008年入選教育部"新世紀優秀人才支持計畫"‚2010年入選上海市"曙光學者計畫"。

目前承擔的主要科研項目:

5. 國家重大科學研究計畫(973項目):鐵電和碳基微納結構中光電耦合和光誘導集體激發的調控 (2011.01-2015.12)

4. 國家自然科學基金(面上項目):外場對鈣鈦礦型多鐵材料光電動力學行為的調控規律 (2011.01-2013.12)

3. 上海市科委基礎研究重大項目:鐵電單晶薄膜製備及其材料器件特性 (2010.10-2012.09)

2. 國家自然科學基金(青年項目):納米尺度下鐵電材料的極化機制及其與光場的耦合規律 (2010.01-2012.12)

1. 國家重大科學研究計畫(973項目):窄禁帶半導體低維結構的自旋調控和自旋光場耦合效應 (2007.07-2011.12)

代表性著作:

02. Z.G. Hu‚ Y.W. Li‚ W.W. Li‚ J.J. Zhu‚ M. Zhu‚ Z.Q. Zhu‚ and J.H. Chu‚ Optical properties and electronic band structures of perovskite-type ferroelectric and conductive metallic oxide films‚ Ferroelectrics edited by Indrani Coondoo‚ Chapter 4‚ page: 63-88‚ ISBN: ISBN 978-953-307-439-9 (INTECH Open Access Publishers‚ Vienna‚ 2010).

01. Z.G. Hu‚ Z.M. Huang‚ and J.H. Chu‚ Optical characterizations of ferroelectric Bi3.25La0.75Ti3O12 thin films from NIR to UV regions using spectroscopic ellipsometry‚ Trends in Semiconductor Research edited by Thomas B. Elliot‚ Chapter 5‚ page: 111-136‚ ISBN: 1-59454-414-X (Nova Science Publishers‚ Inc. NY‚ 2005).

代表性論文:

22. W.L. Yu‚ K. Jiang‚ J.D. Wu‚ J. Gan‚ M. Zhu‚ Z.G. Hu*‚ and J.H. Chu‚ Electronic structures and excitonic transitions in nanocrystalline iron-doped tin dioxide diluted magnetic semiconductor films: An optical spectroscopic study‚ Phys. Chem. Chem. Phys. xx (xx): xxxx-xxxx (2011).

21. J.J. Zhu‚ W.W. Li‚ G.S. Xu‚ K. Jiang‚ Z.G. Hu*‚ M. Zhu‚ and J.H. Chu‚ Abnormal temperature dependence of interband electronic transitions in relaxor-based ferroelectric (1-x)Pb(Mg1/3Nb2/3)O3-xPbTiO3 (x=0.24 and 0.31) single crystals‚ Appl. Phys. Lett. 98 (09): 0919xx (1-3) (2011).

20. J.J. Zhu‚ W.W. Li‚ Y.W. Li‚ Y.D. Shen‚ Z.G. Hu*‚ and J.H. Chu‚ Effects of applied electrical field on electronic structures in LaNiO3 conductive metallic oxide film: An optical spectroscopic study‚ Appl. Phys. Lett. 97 (21): 211904 (1-3) (2010).

19. W.W. Li‚ J.J. Zhu‚ J.D. Wu‚ J. Gan‚ Z.G. Hu*‚ M. Zhu‚ and J.H. Chu‚ Temperature dependence of electronic transitions and optical properties in multiferroic BiFeO3 nanocrystalline film determined from transmittance spectra‚ Appl. Phys. Lett. 97 (12): 121102 (1-3) (2010).

18. J.Z. Zhang‚ Y.D. Shen‚ Y.W. Li‚ Z.G. Hu*‚ and J.H. Chu‚ Composition dependence of microstructure‚ phonon modes‚ and optical properties in rutile TiO2:Fe nanocrystalline films prepared by a nonhydrolytic sol-gel route‚ J. Phys. Chem. C 114 (35):15157-15164(2010).

17. W.W. Li‚ J.J. Zhu‚ J.D. Wu‚ J. Sun‚ M. Zhu‚ Z.G. Hu*‚ and J.H. Chu‚ Composition and temperature dependence of electronic and optical Properties in manganese doped tin dioxide films on quartz substrates prepared by pulsed laser deposition‚ ACS Appl. Mater. Interfaces 02 (08): 2325-2332 (2010).

16. W.W. Li‚ W.L. Yu‚ Y.J. Jiang‚ C.B. Jing‚ J.Y. Zhu‚ M. Zhu‚ Z.G. Hu*‚ X.D. Tang‚ and J.H. Chu‚ Structure‚ optical‚ and room-temperature ferromagnetic properties of pure and transition-metal-(Cr‚ Mn‚ and Ni)-doped ZnO nanocrystalline films grown by the sol-gel method‚ J. Phys. Chem. C 114 (27): 11951-11957 (2010).

15. W.L. Yu‚ W.W. Li‚ J.D. Wu‚ J. Sun‚ J.J. Zhu‚ M. Zhu‚ Z.G. Hu*‚ and J.H. Chu‚ Far-infrared-ultraviolet dielectric function‚ lattice vibration‚ and photoluminescence properties of diluted magnetic semiconductor Sn1-xMnxO2/ c-sapphire nanocrystalline films‚ J. Phys. Chem. C 114 (18): 8593-8600 (2010).

14. W.W. Li‚ Z.G. Hu*‚ Y.W. Li‚ M. Zhu‚ Z.Q. Zhu‚ and J.H. Chu‚ Growth‚ microstructure‚ and infrared-ultraviolet optical conductivity of La0.5Sr0.5CoO3 nanocrystalline films on silicon substrates by pulsed laser deposition‚ ACS Appl. Mater. Interfaces 02 (03): 896-902 (2010).

13. W.W. Li‚ Z.G. Hu*‚ J.D. Wu‚ J. Sun‚ M. Zhu‚ Z.Q. Zhu‚ and J.H. Chu‚ Concentration dependence of optical properties in arsenic-doped ZnO nanocrystalline films grown on silicon (100) substrates by pulsed laser deposition‚ J. Phys. Chem. C 113 (42): 18347-18352 (2009).

12. Z.G. Hu‚ W.W. Li‚ Y.W. Li‚ M. Zhu‚ Z.Q. Zhu‚ and J.H. Chu‚ Electronic properties of nanocrystalline LaNiO3 and La0.5Sr0.5CoO3 conductive films grown on silicon substrates determined by infrared to ultraviolet reflectance spectra‚ Appl. Phys. Lett. 94 (22): 221104 (1-3) (2009).

11. Z.G. Hu‚ W.W. Li‚ J.D. Wu‚ J. Sun‚ Q.W. Shu‚ X.X. Zhong‚ Z.Q. Zhu‚ and J.H. Chu‚ Optical properties of pulsed laser deposited rutile titanium dioxide films on quartz substrates determined by Raman scattering and transmittance spectra‚ Appl. Phys. Lett. 93 (18): 181910 (1-3) (2008).

10. Z.G. Hu‚ Y.W. Li‚ M. Zhu‚ Z.Q. Zhu‚ and J.H. Chu‚ Structure and optical properties of ferroelectric PbZr0.4Ti0.6O3 films grown on LaNiO3-coated platinized silicon determined by infrared spectroscopic ellipsometry‚ J. Phys. Chem. C 112 (26): 9737-9743 (2008).

09. Z.G. Hu‚ Y.W. Li‚ M. Zhu‚ Z.Q. Zhu‚ and J.H. Chu‚ Composition dependence of dielectric functions in ferroelectric BaCo xTi1- xO3 films grown on quartz substrates by transmittance spectra‚ Appl. Phys. Lett. 92 (08): 081904 (1-3) (2008).

08. Y.W. Li‚ Z.G. Hu‚ J.L. Sun‚ X.J. Meng‚ and J.H. Chu‚ Effect of LaNiO3 bottom electrode on structural and dielectric properties of CaCu3Ti4O12 thin films fabricated by sol-gel method‚ Appl. Phys. Lett. 92 (04): 042901 (1-3) (2008).

07. Y.W. Li‚ Z.G. Hu‚ F.Y. Yue‚ G.Y. Yang‚ W.Z. Shi‚ X.J. Meng‚ J.L. Sun‚ and J.H. Chu‚ Properties of highly (100) oriented Pb(Mg1/3‚Nb2/3)O3-PbTiO3 films on LaNiO3 bottom electrodes‚ Appl. Phys. Lett. 91 (23): 232912 (1-3) (2007).

06. Z.G. Hu‚ Y.W. Li‚ F.Y. Yue‚ Z.Q. Zhu‚ and J.H. Chu‚ Temperature dependence of optical band gap in ferroelectric Bi3.25La0.75Ti3O12 films determined by ultraviolet transmittance measurements‚ Appl. Phys. Lett. 91 (22): 221903 (1-3) (2007).

05. Z.G. Hu‚ A.B. Weerasekara‚ N. Dietz‚ A.G.U. Perera‚ M. Strassburg‚ A. Asghar‚ M.H. Kane‚ and I.T. Ferguson‚ Infrared optical anisotropy of diluted magnetic Ga1- xMn xN/ c-sapphire epilayers with a GaN buffer layer by metalorganic chemical vapor deposition‚ Phys. Rev. B 75 (20): 205320 (1-8) (2007).

04. Z.G. Hu‚ and P. Hess‚ Optical constants and thermo-optic coefficients of nanocrystalline diamond films at 30-500 °C‚ Appl. Phys. Lett. 89 (08): 081906 (1-3) (2006); Also appear in Virtual Journal of Nanoscale Science & Technology 14 (10) (2006).

03. Z.G. Hu‚ P. Prunici‚ P. Patzner‚ and P. Hess‚ Infrared spectroscopic ellipsometry of n-alkylthiol (C5-C18) self-assembled monolayers on gold‚ J. Phys. Chem. B 110 (30): 14824-14831 (2006).

02. Z.G. Hu‚ M. Strassburg‚ A. Weerasekara‚ N. Dietz‚ A.G.U. Perera‚ M.H. Kane‚ A. Asghar‚ and I.T. Ferguson‚ Lattice vibrations in hexagonal Ga1- xMn xN epitaxial films on c-plane sapphire substrates by infrared reflectance spectra‚ Appl. Phys. Lett. 88 (06): 061914 (1-3) (2006).

01. Z.G. Hu‚ M. Strassburg‚ N. Dietz‚ A.G.U. Perera‚ A. Asghar‚ and I.T. Ferguson‚ Composition dependence of the infrared dielectric functions in Si-doped hexagonal AlxGa1-xN films on c-plane sapphire substrates‚ Phys. Rev. B 72 (24): 245326 (1-10) (2005).

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