華南理工大學(xué)大學(xué)材料科學(xué)與工程學(xué)院導(dǎo)師:彭明營(yíng)

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華南理工大學(xué)大學(xué)材料科學(xué)與工程學(xué)院導(dǎo)師:彭明營(yíng)

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華南理工大學(xué)大學(xué)材料科學(xué)與工程學(xué)院導(dǎo)師:彭明營(yíng) 正文


  姓名:彭明營(yíng)   性別:男  出生年月:1978年
  職稱:教授   學(xué)院:材料科學(xué)與工程學(xué)院
  最后學(xué)歷:博士  主要研究方向: 新型光功能材料與器件

  彭明營(yíng),男,1978年生,博士,華南理工大學(xué)材料科學(xué)與工程學(xué)院教授,博士生導(dǎo)師。2003年于中科院長(zhǎng)春應(yīng)用化學(xué)研究所獲無(wú)機(jī)化學(xué)專業(yè)理學(xué)碩士學(xué)位。2006年于中科院上海光學(xué)與精密機(jī)械研究所獲材料學(xué)工學(xué)博士學(xué)位。畢業(yè)后獲Max-Planck Research Fellowship在德國(guó)Erlangen-Nuremberg大學(xué)Institut für Optik, Information und Photonik, 做博士后研究,合作導(dǎo)師L.J. Wang教授。2008年獲得DFG科研職位,在德國(guó)Erlangen - Nuremberg大學(xué)Lehrstuhl für Glas und Keramik, 做高級(jí)博士后研究,Project leader,合作導(dǎo)師Wondraczek教授,領(lǐng)導(dǎo)完成鉍摻雜激光玻璃DFG項(xiàng)目一項(xiàng),講授2008-2009學(xué)期本科生與碩士生核心玻璃課程,2010年受聘為華南理工大學(xué)教授。2011年被遴選為博士生導(dǎo)師,入選教育部新世紀(jì)優(yōu)秀人才支持計(jì)劃,加入發(fā)光材料與器件國(guó)家重點(diǎn)實(shí)驗(yàn)室。主要進(jìn)行新型光功能材料與器件的探索,研究與開發(fā)工作,在國(guó)際上較早國(guó)內(nèi)最早開展超寬帶近紅外發(fā)光鉍摻雜激光材料的研究,并對(duì)其發(fā)光機(jī)理進(jìn)行了探索,提出了低價(jià)鉍模型。目前在Opt. Lett., Opt. Express, J. Mater. Chem.等國(guó)際期刊發(fā)表研究論文50余篇,獲授權(quán)專利6項(xiàng),在申請(qǐng)4項(xiàng)。論文被國(guó)際著名學(xué)者Dianov院士,Ohishi教授,Meijerink教授等國(guó)內(nèi)外同行引用1000余次,H因子17。曾獲得中科院劉永齡獎(jiǎng)、院長(zhǎng)獎(jiǎng)、上海市優(yōu)秀畢業(yè)生及Max-Planck Research Fellowship。2009年獲浙江省科學(xué)技術(shù)二等獎(jiǎng)(排名第6)。在國(guó)內(nèi)外大型學(xué)術(shù)會(huì)議作報(bào)告12次,其中特邀6次,在國(guó)際玻璃協(xié)會(huì)2011年年會(huì)擔(dān)任光子玻璃分會(huì)主席1次,應(yīng)邀為Chem. Mater., Opt. Lett.等30余種國(guó)際刊物評(píng)審稿件。目前承擔(dān)國(guó)家自然科學(xué)基金面上項(xiàng)目一項(xiàng),中央高??蒲袠I(yè)務(wù)費(fèi)重點(diǎn)項(xiàng)目一項(xiàng),參與國(guó)家自然科學(xué)基金重點(diǎn)項(xiàng)目一項(xiàng),廣東省團(tuán)隊(duì)一項(xiàng)。

  主要研究方向:
  (1) 超寬帶近紅外發(fā)光鉍摻雜激光材料與器件
  (2) 白光LED用特殊價(jià)態(tài)活性離子激活熒光材料與器件
  (3) 非常規(guī)條件下稀土離子的價(jià)態(tài)控制
  
  
  代表性論文:
  1. M. Peng, Z. Pei, G. Hong, Q. Su “Study on the reduction of Eu3+?Eu2+ in Sr4Al14O25: Eu prepared in air atmosphere”Chem. Phys. Lett., 371 (2003) 1. (times cited:74)
  2. M. Peng, Z. Pei, G. Hong, Q. Su “The reduction of Eu3+?Eu2+ in BaMgSiO4: Eu prepared in air and the luminescence of BaMgSiO4: Eu2+ phosphor” J. Mater. Chem., 13 (2003) 1202. (times cited:62)
  3. M. Peng, J. Qiu, D. Chen, X. Meng, X. Jiang, C. Zhu “Bismuth- and aluminum-codoped germanium oxide glasses for super- broadband optical amplification” Opt. Lett., 29 (2004) 1998. (times cited:118)
  4. M. Peng, J. Qiu, D. Chen, X. Meng, C. Zhu “Super - broadband 1310nm emission from bismuth and tantalum codoped germanium oxide glasses” Opt. Lett., 30 (2005) 2433. (times cited:96)
  5. M. Peng, J. Qiu, D. Chen, X. Meng, C. Zhu “Broadband infrared luminescence from Li2O - Al2O3 – ZnO - SiO2 glasses doped with Bi2O3” Opt. Express, 13 (2005) 6892. (times cited:48)
  6. X. Meng, J. Qiu, M. Peng, D. Chen, Q. Zhao, X. Jiang, C. Zhu “Near infrared broadband emission of bismuth - doped aluminophosphate glass” Opt. Express, 13 (2005) 1628. (times cited: 122)
  7. X. Meng, J. Qiu, M. Peng, D. Chen, Q. Zhao, X. Jiang, C. Zhu “Infrared broadband emission of bismuth - doped barium aluminum borate glasses” Opt. Express, 13 (2005) 1635. (times cited:110)
  8. M. Peng, D. Chen, J. Qiu, X. Jiang, C. Zhu, “Bismuth-doped zinc aluminosilicate glasses and glass-ceramics with ultra-broadband infrared luminescence” Opt. Mater., 29 (2007) 556. (times cited:25)
  9. M. Peng, L. Wondraczek “Bismuth-doped oxide glasses as potential solar spectral converters and concentrators” J. Mater. Chem., 19 (2009) 627.
  10. M. Peng, C. Zollfrank, L. Wondraczek, “Origin of broad NIR photoluminescence in bismuthate glass and Bi-doped glasses at room temperature” J. Phys.: Condens. Matter, 21 (2009) 285106.
  11. M. Peng, Lothar Wondraczek, “Bi2+-doped strontium borates for white light emitting diodes” Opt. Lett., 34 (2009) 2885.
  12. M. Peng, N. Da, S. Krolikowski, A. Stiegelschmitt, L. Wondraczek “Luminescence from Bi2+-activated alkali earth borophosphates for white LEDs” Opt. Express, 17 (2009) 21169.
  13. M. Peng, B. Sprenger, M. Schmidt, H. Schwefel, L. Wondraczek, “Broadband NIR photoluminescence from Bi-doped Ba2P2O7 crystals: Insights into the nature of NIR-emitting Bismuth centers” Opt. Express, 18 (2010) 12852.
  14. M. Peng, L. Wondraczek, “Photoluminescence of Sr2P2O7:Bi2+ as a red phosphor for additive light generation” Opt. Lett., 35 (2010) 2544.
  15. G. Gao, S. Reibstein, M. Peng, L. Wondraczek, “Tunable dual-mode photoluminescence from nanocrystalline Eu-doped Li2ZnSiO4 glass ceramic phosphors” J. Mater. Chem., 21 (2011) 3156.
  16. D. Yu, S. Ye, M. Peng, Q. Zhang, J. Qiu, J. Wang, L. Wondraczek, “Efficient near-infrared photon cascade emission in GdVO4:Dy3+ phosphors for enhancing the photo response of solar cells”, Solar Energy Materials & Solar Cells, 95(2011)1590.
  17. G. Gao, R. Meszaros, M. Peng, L. Wondraczek, “Broadband UV-to-green photoconversion in V-doped lithium zinc silicate glasses and glass ceramics”, Optics Express, 19(2011)A312.
  18. M. Peng, N. Zhang, L. Wondraczek, J. Qiu, Z. Yang, Q. Zhang, “Ultrabroad NIR luminescence and energy transfer in Bi and Er/Bi co-doped germanate glasses”, Optics Express, 19(2011) 20799.
  19. D. Yu, X. Huang, S. Ye, M. Peng, Q. Zhang, L. Wondraczek, “Three-photon near-infrared quantum splitting in β-NaYF4:Ho3+”, Applied Physics Letters, 99 (2011) 161904.
  20. N. Zhang,J. Qiu*, G. Dong, Z. Yang, Q. Zhang, and M. Peng*, “Broadband tunable near infrared emission of Bi-doped composite germanosilicate glasses”, Journal of Materials Chemistry, 22 (2012) 3154. (*Corresponding authors).
  21. G. Gao, S. Reibstein, E. Spiecker, M. Peng, L. Wondraczek, “Broadband NIR photoluminescence from Ni2+-doped nanocrystalline Ba–Al titanate glass ceramics” Journal of Materials Chemistry, 22 (2012) 2582.
  22. R. Cao,† M. Peng,†* L. Wondraczek, J. Qiu,* “Superbroad near-to-mid-infrared luminescence from Bi53+ in Bi5(AlCl4)3” Optics Express, 20 (2012) 2562. (†Equal contribution,*Corresponding authors).
  23. G. Gao, M. Peng, L. Wondraczek, “Temperature dependence and quantum efficiency of ultrabroad NIR photoluminescence from Ni2+ centers in nanocrstalline Ba-Al titanate glass ceramics” Optics Letters, accepted, 2012.
     

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