劉向雷

劉向雷

劉向雷,男,博士,南京航空航天大學能源與動力學院教授。

2011年7月畢業於西安交通大學能源與動力工程學院,獲學士學位,2016年5月畢業於美國喬治亞理工學院,獲博士學位。2016年6月被聘為南京航空航天大學教授。,福布斯中國30位30歲以下精英,中國科協“青年人才托舉工程”,江蘇省“雙創博士”,南京航空航天大學首批“長空學者”等人才計畫。

基本介紹

  • 中文名:劉向雷
  • 國籍:中國
  • 民族:漢族 
  • 出生日期:1989年1月 
  • 職業:教師
  • 畢業院校:美國喬治亞理工學院 
  • 學位/學歷:博士 
  • 專業方向:工程熱物理 
個人經歷,研究方向,學術兼職,主要成就,獲獎記錄,

個人經歷

2007.08—2011.07 西安交通大學,能源與動力工程學院,獲學士學位;
2011.08—2016.05 美國喬治亞理工學院(Georgia Institute of Technology),機械工程系,獲博士學位;
2016.06—至今 南京航空航天大學 教授。

研究方向

微納尺度傳熱原理與套用、輻射製冷與智慧型節能技術、熱推進、高溫儲熱與換熱、高效太陽能綜合利用

學術兼職

16th international heat transfer conference 副主編
美國機械工程師協會(ASME)會員,美國航空航天協會(AIAA)會員,美國物理協會(APS)會員,美國光學協會(OSA)會員、中國航空學會會員
Referee/Reviewer: Physical Review Letters、Physical Review B、Scientific Reports、 International Journal of Heat and Mass Transfer、Optics Letters、Optics Express、Journal of Quantitative Spectroscopy and Radiative Transfer、International Journal of Thermophysics and Heat Transfer、Journal of Applied Physics、Journal of Materials C、Heat Transfer Engineering

主要成就

代表性學術論文
  1. Shen, J.D., Liu, X.L.*, et al., 2018, “High-performance noncontact thermal diode via asymmetric
    nanostructure”,Journal of Quantitative Spectroscopy and Radiative Transfer, 211,1-8
  2. Liu, X.L., and Xuan, Y.M., 2017, “Full-spectrum volumertric solar thermal conversion via photonic nanofluids,” Nanoscale,9, 14854
  3. Liu, X.L., Shen, J.D., and Xuan, Y.M., 2017, “Pattern-free thermal modulator via thermal radiation between Van der Waals materials,” Journal of Quantitative Spectroscopy and Radiative Transfer,200,100-107
  4. Liu, X.L., and Xuan, Y.M., 2017, “Defects-assisted solar absorption of plasmonic nanoshell-based nanofluids,” Solar Energy,146,503-510
  5. Liu, X.L., and Xuan, Y.M., 2016, “Super-Planckian Thermal Radiation Enabled by Hyperbolic Surface Phonon Polaritons,” Science China-Technological Sciences 59 (11),1680-1686
  6. Liu, X.L., and Zhang, Z.M., 2016, “High-Performance Electroluminescent Refrigeration Enabled by Photon Tunneling,” Nano Energy 26, 353-359
  7. Liu, X.L., and Zhang, Z.M., 2016, “Tunable Stable Levitation based on Casimir Interaction between Nanostructures,” Physical Review Applied, 5(3), 034004
  8. Liu, X.L., and Zhang, Z.M., 2015, “Giant Enhancement of Nanoscale Thermal Radiation Based on Hyperbolic Graphene Plasmons,” Applied Physics Letters, 107 (14), p. 143114
  9. Liu, X.L., and Zhang, Z.M., 2015, “Near-Field Thermal Radiation between Metasurfaces,” ACS Photonics 2 (9), pp. 1320-1326
  10. Liu, X.L., Zhao, B., and Zhang, Z.M., 2015, “Enhanced Near-Field Thermal Radiation and Reduced Casimir Stiction between Doped-Si Gratings,” Physical Review A 91 (6), p. 062510
  11. Liu, X.L., Wang, L.P., and Zhang, Z.M., 2015, “Near-Field Thermal Radiation: Recent Progress and Outlook,” Nanoscale and Microscale Thermophysical Engineering 19 (2), pp. 98-126. Invited
  12. Liu, X.L., Zhao, B., and Zhang, Z.M., 2015, “Blocking-Assisted Infrared Transmission of Subwavelength Metallic Gratings by Graphene,” Journal of Optics 17, p. 035004
  13. Liu, X.L., and Zhang, Z.M., 2014, “Graphene-Assisted Near-Field Radiative Heat Transfer between Corrugated Polar Materials,” Applied Physics Letters 104 (25), p. 251911
  14. Liu, X.L., Zhang, Z.R., and Zhang, Z.M., 2014, “Near-Perfect Photon Tunneling by Hybridizing Graphene Plasmons and Hyperbolic Modes,” ACS Photonics 1, pp. 785-789
  15. Liu, X.L., Bright, TJ., and Zhang, Z.M., 2014, “Application Conditions of Effective Medium Theory in Near-Field Radiative Heat Transfer between Multilayered Metamaterials,” Journal of Heat Transfer 136(9), p. 092703
  16. Liu, X.L., Zhang, Z.R., and Zhang, Z.M., 2014, “Near-field Radiative Heat Transfer with Doped-Silicon Nanostructured Metamaterials,” International Journal of Heat and Mass Transfer 73, pp. 389-398
  17. Liu, X.L., Zhang, Z.R., and Zhang, Z.M., 2013, “Near-Field Thermal Radiation between Hyperbolic Metamaterials: Graphite and Carbon Nanotubes,” Applied Physics Letters 103 (21), p. 213102
  18. Liu, X.L., and Zhang, Z.M., 2013, “Metal-Free Low-Loss Negative Refraction in the Mid-Infrared Region,” Applied Physics Letters 103 (10), p. 103101
  19. Liu, X.L., Zhao, B., and Zhang, Z.M., 2013, “Wide-angle Near Infrared Polarizer with Extremely High Extinction Ratio,” Optics Express, 21 (9), pp. 10502-10510
  20. Liu, X.L., Wang, L.P., and Zhang, Z.M., 2013, “Wideband Tunable Omnidirectional Infrared Absorbers Based on Doped-Silicon Nanowire Arrays,” Journal of Heat Transfer 135(6), p. 061602. Invited

獲獎記錄

愛思唯爾/雷蒙德·維斯坎塔青年科學家獎(全球熱輻射領域每年1-2人), 2017
喬治亞理工學院最佳博士論文(Top 2%), 2017
2015年度國家優秀自費留學生獎學金(全球500名)
2012和2013連續獲得國際機械工程師大會(ASME IMECE)旅費獎

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