個人簡介
姓名:梅永豐性別:男 出生年份: 1976年 家鄉(xiāng):江蘇省常州市武進(jìn)區(qū)鄭陸鎮(zhèn)徐家村委羌渚頭
職稱:教授
1995-1999,南京大學(xué)物理學(xué)系,本科,微電子與固態(tài)電子學(xué)
1999-2002,南京大學(xué)物理學(xué)系,碩士,光學(xué)
2002-2005,香港城市大學(xué)物理與材料科學(xué)系,理學(xué)博士
2005-2007,德國馬克思普朗克固態(tài)研究所,博士后
2007-2010,德國萊布尼茨固態(tài)與材料研究所,課題組組長,固定研究職員
2010-至今,復(fù)旦大學(xué)材料科學(xué)系,教授
個人榮譽(yù)
2004年,梅永豐博士被香港城市大學(xué)科學(xué)與工程學(xué)院推薦為“香港青年科學(xué)獎候選人”(僅一名);同年,于法國歐洲材料學(xué)會春季會議上獲青年科學(xué)家獎;2005年于香港城市大學(xué)獲“中華旅行社獎學(xué)金”;2006年9月,在西班牙巴塞羅那微米和納米工程會議上獲得“科學(xué)藝術(shù)畫榮譽(yù)獎”;2008年11月,于德國萊布尼茲固態(tài)與材料研究所獲“IIN年度研究獎”(相當(dāng)于年度最佳研究獎)。
研究方向
納米薄膜技術(shù) (Nanomembranes technology)
卷曲納米技術(shù)(Rolled-up nanotech)
無機(jī)柔性電子學(xué)研究
微納器件及其集成化研究
面向物聯(lián)網(wǎng)的新型探測器研究。
代表性論文
1. P. Feng, I. M?nch, G. S. Huang, S. Harazim, E. J. Smith, Y. F. Mei*,O. G. Schmidt, Local-Illuminated Ultrathin Silicon Nanomembranes with Photovoltaic Effect and Negative Transconductance, Advanced Materials (2010). (in press)
2. A. A. Solovev, Y. F. Mei*, O. G. Schmidt, Catalytic Micro Strider at the Air-Liquid Interface, Advanced Materials (2010). (in press)
3. A. A. Solovev, S. Sanchez*, M. Pumera, Y. F. Mei*, O. G. Schmidt, Magnetic Control of Catalytic Microbots for the Delivery and Assembly of Microobjects, Advanced Functional Materials (2010). (in press)
4. Y. F. Mei,* S. Kiravittaya, S. Harazim, O. G. Schmidt, Principles and Applications of Micro- and Nanoscale Wrinkles, Materials Science & Engineering R: Reports (2010). (Invited Review; in press)
5. E. J. Smith,* Z. Liu, Y. F. Mei,* O. G. Schmidt, Combined surface plasmon and classical waveguiding through metamaterial fiber design, Nano Letters 10, 1 (2010). (Cover; highlighted in Nature Photonics)
6. P. Feng,* I. M?nch, S. Harazim, G. Huang, Y. F. Mei,* O. G. Schmidt, Giant Persistent Photoconductivity in Rough Silicon Nanomembranes, Nano Letters 9, 3453 (2009).
7. A. A. Solovev, Y. F. Mei,* et al. Catalytic Microtubular Jet Engines Self-propelled by Accumulated Gas Bubbles, Small 5, 1688-1692 (2009).? (Cover)
8. E. Smith,* Z. Liu, Y. F. Mei,* O. G. Schmidt, System investigation of a rolled-up metamaterial optical hyperlens structure, Applied Physics Letters 95, 083104 (2009); “Erratum” in 96, 019902 (2010).
9. V. A. Bola?os Qui?ones, G. S. Huang, J. D. Plumhof, S. Kiravittaya, A. Rastelli, Y. F. Mei,* O. G. Schmidt, Optical Resonance Tuning and Polarization of Thin-Walled Tubular Microcavities, Optics Letters 34, 2345u20132347 (2009).
10. Y. F. Mei,* et al. Fabrication, self-assembly, and properties of ultra-thin AlN/GaN porous crystalline nanomembranes: tubes, spirals, and curved sheets, ACS Nano 3, 1663 (2009). (Cover)
11. G. S. Huang,* Y. F. Mei, et al. Optical properties of rolled-up tubular microcavities from shaped nanomembranes, Applied Physics Letters 94: 141901 (2009). (Cover)
12. G. S. Huang,* Y. F. Mei,* et al. Rolled-up transparent microtubes as two-dimensionally confined culture scaffolds of individual yeast cells, Lab on a Chip,? 9: 263 (2009).
13. Y. F. Mei,* et al.Versatile approach for integrative and functionalized tubes by strain engineering of nanomembranes on polymers, Advanced Materials, 20: 4085 (2008). (Cover)
14. Y.-F. Chen,* Y. F. Mei,* et al. Towards Flexible Magnetoelectronics: Buffer-Enhanced and Mechanically Tunable GMR of Co/Cu Multilayers on Plastic Substrates, Advanced Materials, 20: 3224-3228 (2008).
15. A. Malachias, Y. F. Mei,* et al. Wrinkled-up Nanochannel Networks: Long-Range Ordering, Scalability, and X-ray Investigation, ACS Nano, 2: 1715-1721 (2008). (Cover)
16. Y. F. Mei,* et al. Semiconductor sub-micro-/ nanochannel networks by deterministic layer wrinkling, Advanced Materials, 19(16): 2124-2128 (2007).
17. Y. F. Mei,* et al. Optical properties of a wrinkled nanomembrane with embedded quantum well, Nano Letters, 7(6): 1676-1679 (2007).
18. Y. F. Mei,* G et al.Visible cathodoluminescence of 4 angstrom single-walled carbon nanotubes, Applied Physics Letters, 87, 213114 (2005).
19. Y. F. Mei,* et al. Synthesis and optical properties of germanium nanorod array fabricated on porous anodic alumina and Si-based templates, Applied Physics Letters, 86, 21111 (2005).
20. Y. F. Mei, X. L. Wu,* et al. Formation mechanism of alumina nanotube array, Physical Letters A, 309, 109-113 (2003).
21. X. L. Wu,* Y. F. Mei, et al. Spherical growth and surface-quasifree vibrations of Si nanocrystallites in Er-doped Si nanostructures,? Physical Review Letters, vol. 86, 3000-3003 (2001).