教師隊伍
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林元華
教授

博士,院長
電話:62773741
電子郵箱:linyh@tsinghua.edu.cn
辦公地址:清華大學逸夫技術科學樓C503室

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  • 教育背景
  • 工作履曆
  • 教學
  • 研究領域
  • 獎勵與榮譽
  • 學術成果

2001.8-至今    beat365助研、副研究員、教授。

2004.11-2006.09  東京大學物理系博士後 (JSPS資助)

2009,教育部自然科學二等獎(排名第一)

2008,清華大學“林楓”優秀輔導員獎

2007,中國矽酸鹽學會青年科技獎

2005,入選北京市“科技新星”計劃

講授研究生專業課程“材料性能物理基礎”

1) 面向高端電子用氧化物無機介質材料與器件

2)面向能源轉換的氧化物高溫熱電材料與器件

2023,中國電子元件行業協會科技進步獎一等獎

2022,中國建築材料聯合會⋅中國矽酸鹽學會建築材料科學技術獎基礎研究獎一等獎

2021,教育部自然科學獎一等獎

2008,清華大學“林楓”優秀輔導員獎

2007,中國矽酸鹽學會青年科技獎

2005,入選北京市“科技新星”計劃

【論文與專利】

目前發表SCI收錄論文300餘篇,其中在ScienceNat. Mater.Nat. EnergyNat. Comunn.Phys. Rev. Lett., Adv. Mater等期刊上發表100餘篇,SCI論文被引用30000餘次。申請專利30項,獲授權20項。在國際國内會議上做邀請報告80餘次。


【近期發表的部分論文】

1. B. Yang, Q. Zhang, H. Huang, et al. Engineering relaxors by entropy for high energy storage performance, Nature Energy, doi.org/10.1038 (2023).

2. Z. Zhou, Y. Huang, B. Wei, et al. Compositing effects for high thermoelectric performance of Cu2Se-based materials, Nature Communications, 14(1), 2410 (2023).

3. Y. Zheng, H. Chen, Z. Zhou, et al. Electrical Property Enhancement in Orientation‐Modulated Perovskite La‐Doped SrTiO3 Thermoelectric Thin Films, Advanced Functional Materials, 2301815 (2023).

4. B. Yang, Y. Zhang, H. Pan, et al. High-entropy enhanced capacitive energy storage, Nature Materials, 21(9), 1074-1080 (2022).

5. Y. Liu, Y. Wang, J. Ma, et al. Controllable electrical, magnetoelectric and optical properties of BiFeO3 via domain engineering, Progress in Materials Science, 127, 100943 (2022).

6. Y. Yang, J. Han, Z. Zhou, et al. Seeking new layered oxyselenides with promising thermoelectric performance, Advanced Functional Materials, 32(18), 2113164 (2022).

7. Y. Liu, J. Liu, H. Pan, et al. Phase-Field Simulations of Tunable Polar Topologies in Lead-Free Ferroelectric/Paraelectric Multilayers with Ultrahigh Energy-Storage Performance, Advanced Materials, 34(13) (2022).

8. H. Pan, S. Lan, S. Xu, et al. Ultrahigh energy storage in superparaelectric relaxor ferroelectrics, Science, 374, 100-104 (2021).

9. H. Pan, F. Li, Y. Liu, et al. Ultrahigh-energy density lead-free dielectric films via polymorphic nanodomain design. Science, 365, 578-582 (2019).

10. G. K. Ren, S. Wang, Z. Zhou, et al. Complex electronic structure and compositing effect in high performance thermoelectric BiCuSeO. Nature Communications, 10(1): 2814 (2019).

11. G. K. Ren, J. Lan, L. Zhao, et al. Layered oxygen-containing thermoelectric materials: mechanisms, strategies and beyond. Mater. Today, 29, 68 (2019)

12. H. Pan, J. Ma, J. Ma, et al. Giant energy density and high efficiency achieved in bismuth ferrite-based film capacitors via domain engineering. Nature Communications, 9(1) 1813 (2018).

13. J. L. Lan, Y. Liu, B. Zhan, et al. High thermoelectric figure of merit ZT > 1.0 observed in BiCuSeO. Adv. Mater., 25, 5086 (2013).

14. Y. Liu, L. Zhao, C. Liu, et al. Remarkable enhancement in thermoelectric performance of BiCuSeO by Cu deficiencies. J. Am. Chem. Soc., 133, 20112 (2011) .

15. C.-W. Nan, G. Liu, Y.-H. Lin, et al. Magnetic-field-induced electric polarization in multiferroic nanostructures. Phys. Rev. Lett., 94, 197203 (2005).

16. J. Wu, C. -W. Nan, Y. -H. Lin, et al. Giant dielectric permittivity observed in Li and Ti doped NiO. Phys. Rev. Lett., 89, 217601 (2002).

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