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張潔

(重慶大學光電工程學院教授)

鎖定
張潔,女,博士,重慶大學光電工程學院教授,博士生導師
在《Carbon》、《Optics Express》、《Analyst》、《Plasmonics》等期刊發表相關學術論文30餘篇,申請和獲得發明專利10餘項。作為項目負責人主持/完成了國家自然科學基金“面向顯示基於MEMS光柵平動式光調製器基礎理論和關鍵技術研究”、“基於MEMS光柵光調製器線陣的近紅外光譜監測儀研究”、“基於金納米粒子修飾碳納米管陣列三維結構的光流控SERS微系統研究”、“ 基於PCF-CNTs-AgNPs的全光纖表面增強拉曼散射氣體檢測關鍵技術研究”等4項;重慶市自然科學基金4項;全國博士後基金1項等科研項目。
中文名
張潔
國    籍
中國
民    族
漢族
畢業院校
重慶大學
學位/學歷
博士
職    務
重慶大學光電工程學院博士生導師
職    稱
教授

張潔人物經歷

張潔教育經歷

2004/03-2006/12,重慶大學,光電工程學院,攻讀博士學位
2002/09-2004/02,重慶大學,光電工程學院,攻讀碩士學位(直博)
1998/09-2002/07,重慶大學,光電工程學院,攻讀學士學位 [1] 

張潔工作經歷

2013.09-至今,重慶大學,光電工程學院,教授
2007/09-2013.09,重慶大學,光電工程學院,副教授
2009/01-2009/12,美國加州大學伯克利分校,機械系,訪問學者
2007/02-2010/12,重慶大學,光電工程學院,博士後
2005/07-2007/09,重慶大學,光電工程學院,助教 [1] 

張潔講授課程

《物理光學》(本科生),《信息光學》(研究生) [1] 

張潔研究方向

近年來主要從事光微納器件及系統、新型拉曼光譜儀器、納米材料表面增強拉曼方面的研究。 [1] 

張潔學術成果

張潔科研項目

  1. 國家自然科學基金面上項目,61875024,基於PCF-CNTs-AgNPs的全光纖表面增強拉曼散射氣體檢測關鍵技術研究,2019/01-2022/12,67萬元,在研,主持。
  2. 國家自然科學基金面上項目,61376121,基於金納米粒子修飾碳納米管陣列三維結構的光流控SERS微系統研究,2014/01-2017/12,82萬元,已結題,主持。
  3. 國家自然科學基金面上項目,60976084,基於MEMS光柵光調製器線陣的近紅外光譜監測儀研究,2010/01-2010/12,10萬元,已結題,主持。
  4. 國家自然科學基金青年基金項目,60708017,面向顯示基於MEMS光柵平動式光調製器基礎理論和關鍵技術研究,2008/01-2010/12,24萬元,已結題,主持。
  5. 重慶市自然科學基金重點項目,CSTC2015JCYJBX 0034,石墨烯複合材料表面增強拉曼散射,2016/01-2018/12,20萬元,在研,主持。
  6. 重慶大學A類人才計劃,cqu2018CDHB1A07,全光纖表面增強拉曼散射氣體檢測關鍵技術研究,2018/07-2021/06,60萬元,在研,主持。
  7. 重慶市自然科學基金, CSTC2011BB2076、碳納米管陣列/薄膜器件的光學特性機理和實驗研究,2011/07-2014/06,5萬元,已結題,主持。
  8. 重慶市自然科學基金,CSTC2009BB3352,基於MEMS光調製器的光譜分析關鍵技術研究、2009/08月-2010/09,3萬元,已結題,主持。
  9. 全國博士後基金,20070410773,基於MEMS新型光柵平動式光調製器基礎理論和關鍵技術研究,2007/01-2008/12,3萬元,已結題,主持。
  10. 重慶市自然科學基金,CSTC2007BB2110,基於MEMS反射/漫射光調製器關鍵技術研究、2006/09-2008/08,3萬元,已結題,主持。
  11. 中央高校面上項目,106112013CDJZR120003,基於光流控技術的三維有序碳納米管/金納米粒子複合結構SERS研究,2013/04-2015/03,5萬元,已結題,主持。
  12. 中央高校重點項目,106112013CDJZR125502,金屬納米粒子/碳納米管拉曼增強機理和實驗、2013/01-2014/12,20萬元,已結題,主持。
  13. 中央高校面上項目,106112010CDJZR10120008,垂直排列的多壁碳納米管光電響應特性研究,2010/06-2013/05,5萬元,已結題,主持。 [1] 

張潔發表論文

[1]Zhang J.*, Yin Z.H., Zhang X.L., and Zhu Y., Quantitative SERS by electromagnetic enhancement normalization with carbon nanotube as an internal standard, Opt. Express, 2018, 26(18), 23534-23539.
[2]Zhang J.*, Yin Z.H., Gong T.C., Luo Y.F., Wei DP., and Zhu Y., Graphene/Ag nanoholes composites for quantitative surface-enhanced Raman scattering, Opt. Express, 2018, 26(17), 22432-22439.
[3]Zhang X.L., Wang N., Liu R.J., Wang X.Y., Zhu Y.,Zhang J., SERS and the photo-catalytic performance of Ag/TiO2/graphene composites,Optics Materials Express, 2018,8,4,704-717.
[4]Huang P.J., Wang Ning, Li J.Y.,Zhu Y.,Zhang J., Fiber Fabry-Perot Force Sensor with Small Volume and High Performance for Assessing Fretting Damage of Steam Generator Tubes,Sensors2017, 17, 2899.
[5]Huang P.J., Wang N., Li J.Y.,Zhu Y.,Zhang J.,Xi Z.D., Optical Fiber Demodulation System with High Performance for Assessing Fretting Damage of Steam Generator Tubes,Sensors2018, 18, 201.
[6]Quan J.M,Zhang J.*, Qi X.Q., Li J.Y., Wang N., and Zhu Y., A study on the correlation between the dewetting temperature of Ag film and SERS intensity,Scientific Reports,2017,7,14771.
[7]Wang X.Y.,Zhang J.*, hang X.L., and Yong Zhu Y., Characterization, uniformity and photo-catalytic properties of graphene/TiO2nanocomposites via Raman mapping,Optics Express,2017,25(18),21496-21508.
[8]Li J.Y., Zhu Y. *, Wang X.,Zhang J.*, Ding Y.M., Zhang X.L., Quan J.M., Wang N., Joint effect of the tube sizes and Fe-filling process on microwave dielectric properties of carbon nanotubes,Carbon,2017, Volume 119, 386–393.
[9]Quan J.M.,Zhu Y.,Zhang J.,Li J.Y., and Wang N., High-performance surface-enhanced Ramanscattering substrate prepared by self-assemblingof silver nanoparticles into the nanogapsof silver nanoislands,Applied Optics, 2017, 56(20), 5751-5760.
[10]Zhang J.*, Wang X.Y., Zhang P.Y., Quan J.M., Zhu Y., Surface-enhanced Raman scattering activities of graphene-wrapped Cu particles by chemical vapor deposition assisted with thermal annealing,Optics Express, 2016, 24(21):24551-24566.
[11]Zhang J.*, Zhang X.L., Ding Y.M.,Zhu Y., ZnO/graphene/Ag composite as recyclable surface-enhanced Raman scattering substrates,Applied Optics, 2016,55,32, 9105-9112.
[12]Zhang X.L.,Zhang J.*, Quan J.M., Wang N., Zhu Y., Surface-enhanced Raman scattering activities of carbon nanotubes decorated with silver nanoparticles,Analyst, 2016, 141, 5527-5534.
[13]Zhang J. *, Zhang X.L., Chen S.M., Gong T.C., Zhu Y. *, Surface-enhanced Raman scattering properties of multi-walled carbon nanotubes arrays-Ag nanoparticles,Carbon, 2016, 100: 395-407
[14]Gong T.C.,Zhang J.*, Zhu Y.*, Wang X.Y., Zhang X.L., Zhang J., Optical properties and surface-enhanced Raman scattering of hybrid structures with Ag nanoparticles and graphene,Carbon,2016, 102: 245-254
[15]Wang X.Y., Wang N.*, Gong T.C., Zhu Y.,Zhang J., Preparation of graphene-Ag nanoparticles hybrids and their SERS activities,Applied Surface Science, 2016, 387,707–719.
[16]Zhang J.*, Zhang P.Y., Ding Y.M., Zhang X.L. , Quan J.M. , Zhu Y., Ag-Cu Nanoparticles Encaptured by Graphene with Magnetron Sputtering and CVD for Surface-enhanced Raman Scattering,Plasmonics, 2016, DOI: 10.1007/s11468-016-0202-9
[17]Zhang J.*, Chen S.M., Gong T.C., Zhang X.L., Zhu Y., Tapered Fiber Probe Modified by Ag Nanoparticles for SERS Detection,Plasmonics, 2016,11(3), 743-751.
[18]Gong T.C, Zhu Y.*,Zhang J.*, Xie W.B., Ren W.J.,Quan J.M., Study on surface-enhanced Raman scattering substrates structured with hybrid Ag nanoparticles and few-layer graphene,Carbon, 2015,87:385-394.
[19]Zhang J.*, Zhang X.L., Lai C.H., Zhou H.J., Zhu Y.,Silver-decorated aligned CNT arrays as SERS substrates by high temperature annealing,Optics Express, 2014, 22(18),21157-21166.
[20]Zhang J. *, Fan T., Zhang X.L., Lai C.H., Zhu Y., Three-dimensional multi-walled carbon nanotube arrays coated by gold-sol as a surface-enhanced Raman scattering substrate,Applied Optics, 2014, 53(6),1159-1165.
[21]Zhang J. *, Chen Y.L., Fan T., Lai C.H., Zhu Y., Vertically aligned Multi-walled CNT arrays coated by gold nanoparticles for surface-enhanced Raman scattering,Micro System Technologies, 2014, 20(1),113–117.
[22]Zhang J. *, Chen Y.L., Zhu Y., Luo F., Photo-induced currents in large area multiwalled CNT films/Al structure,Chinese Optics Letters, 2014, 12(4),S10402.
[23]Zhang J. *, Chen Y.L., Fan T., Zhu Y., Large area Au decorated multi-walled CNTs film for surface enhanced Raman scattering,Key Engineering Materials, 2013, 562(565),826-831. [1] 
參考資料