范春珍,女,博士,教授,現任職於鄭州大學。
基本介紹
- 中文名:范春珍
- 學位/學歷:博士
- 職業:教師
- 專業方向:超構材料的熱學、電磁性能研究
- 任職院校:鄭州大學
- 教學職稱:教授
個人簡介,個人經歷,研究方向,學術成果,專利,
個人簡介
2010年獲得復旦大學博士學位(碩博連讀),博士期間前往美國公派交流一年。主要從事超材料的結構設計及其熱學和電磁學性能調控。先後主持國家自然科學基金青年項目、河南省科技攻關項目2項、河南省高校重點科研項目3項等。已在Applied Physics Letters、ES Energy and Environment、Langmuir、Optics Express、The Journal of Physical Chemistry C、Journal of Optics等國內外學術期刊發表相關SCI學術論文80餘篇,授權國家發明專利4項。其中以第一作者首次發表了基於坐標變換的理論熱學,並預言了熱隱身,極力促進了熱超構材料的領域的發展[Applied Physics Letters 92,251907 (2008)]。現為國際熱力學與熱超構材料學術會議組委會成員。
個人經歷
2005.09-2010.07復旦大學物理系;
2010.10-2013.12鄭州大學物理工程學院講師;
2014.01-2022.01 鄭州大學物理工程學院副教授。
2008.06-2008.08 香港中文大學物理系,研究助理
2008.10-2009.10 美國肯特州立大學液晶研究所,研究助理
2010.11-2013.12 鄭州大學,物理工程學院,講師
2022.02- 鄭州大學,物理學院,教授
研究方向
超構材料的熱學、電磁性能研究。
1. 新型超材料的構築及其電磁、熱學性能調控;
2. 微結構表面相干熱輻射用於輻射製冷的研究;
3. 納米光子學與表面等離激元光子學。
學術成果
項目:
[1].主持國家自然科學基金青年項目,項目名稱《基於鐵磁流體的高度有序和生物相容性表面增強拉曼散射基底研究》,項目批准號:11104252, 2012.1-2014.12.已結題
[2].主持2017年度河南省科技廳科技攻關項目,《高性能四氧化三鐵納米顆粒的表面修飾及其在生物醫學中套用》項目編號:1721023100107, 2017.1-2018.12.
[3].主持2017年度河南省教育廳科學技術研究重點項目,《大面積新型超薄過渡金屬硫化物二維材料及其異質結構的製備與光電性能研究》項目編號:17A140002, 2017.1-2018.12.
論文:
[1].Wei Jia, Yuchen Tian, Peiwen Ren andChunzhen Fan* Dynamically tunable optical properties in graphene based plasmon-induced transparency metamaterials, Chin. Phys. B 28, 2 026102 (2019).
[2].Yuchen Tian, Wei Jia, Peiwen Ren andChunzhen Fan* Tunable Plasmon Induced Transparency Based on asymmetric H-shaped Graphene Metamaterials, Chin. Phys. B, 27 (12): 124205 (2018).
[3].Shuangmei Zhu,Chunzhen Fan, Pei Ding, Erjun Liang, Hongwei Hou, Yuanda Wu, Theoretical investigation of a plasmonic substrate with multiresonance for surface enhanced hyper-Raman scattering, Scientific Reports 8:11891 (2018).
[4].Shuangmei Zhu,Chunzhen Fan, Junqiao Wang, Erjun Liang and Haoshan Hao,Sensitive surface-enhanced Raman scattering substrates based on anti-pyramidal gold architectures decorated with silver nanoparticles, Spectroscopy Letters, 2018, 1-9, 1503603.
[5].Yuchen Tian, Pei Ding,Chunzhen Fan*Tunable plasmon-induced transparency in plasmonic metamaterial composed of three identical rings Optical Engineering 56(10), 107106 (2017).
[6].Chunzhen Fan, Shuangmei Zhu, Haoyi Xin, Yuchen Tian, Erjun Liang,Tunable and enhanced SERS activity of magneto-plasmonic Ag-Fe3O4nanocomposites with one pot synthesize method, Journal of Optics,19 015401 (2017).
[7].Chunzhen Fan, Shuangmei Zhu, Haoyi Xin, Controllable optical activity of non-spherical Ag and Co SERS substrate with different magnetic field, Chinese Physics B, 26 (2): 023301 (2017).
[8].Jinna He,Chunzhen Fan, Pei Ding, Shuangmei Zhu, Erjun Liang, Near-field engineering of Fano resonances in a plasmonic assembly for maximizing CARS enhancements, Scientific Reports, 6:20777 (2016).
[9].Shuangmei Zhu,Chunzhen Fan, Yanchao Mao, Junqiao Wang, Jinna He, Erjun Liang, and Mingju Chao, A monolayer of hierarchical silver hemi-mesoparticles with tunable surface topographies for highly sensitive surface-enhanced Raman spectroscopy, The Journal of Chemical Physics 144, 074703 (2016).
[10].Chunzhen Fan, Tunable SERS effect of the silver rod and magnetite nanocomposite with different magnetic field and aspect ratios, Journal of Optics, 45(4):307–311, (2015).
[11]. Yuanlin Jia, Huaiyuan Yin, HuaweiYao, Junqiao Wang, Chunzhen Fan*, Highly tunable thermal emitter with vanadium dioxide metamaterials for radiative cooling, Applied Optics (2021)
[12]. Chunzhen Fan*, Peiwen Ren, Yuanlin Jia, Shuangmei Zhu, Junqiao Wang, Highly tunable plasmon induced transparency with Dirac semimetal metamaterials, Chinese Physics B (2021)
[13]. Huaiyuan Yin, Huawei Yao, Yuanlin Jia, Junqiao Wang, Chunzhen Fan*, Realization of efficient radiative cooling in thermal emitter with inorganic metamaterials, Journal of Physics D: Applied Physics 54 345501 (2021).
[14]. Yuanlin Jia, Huaiyuan Yin, HuaweiYao, Junqiao Wang, Chunzhen Fan*, Realization of multi-band perfect absorber in graphene based metal-insulator-metal metamaterials, Results in Physics 25 104301 (2021)
[15]. Huawei Yao, Xiaoxia Wang, Huaiyuan Yin, Yuanlin Jia, Yong Gao, Junqiao Wang, Chunzhen Fan*, Efficient realization of daytime radiative cooling with hollow zigzag SiO2 metamaterials, Chinese Physics B 30 064214 (2021).
[16]. Chunzhen Fan*, Yuanlin Jia, Peiwen Ren, Wei Jia, Tunable plasmon induced transparency and multispectral with large group delay in graphene metamaterials, Journal of Physics D: Applied Physics 54 035107 (2021).
[17]. Peiwen Ren, Yuanlin Jia, Chunzhen Fan*, Investigation on Tunable and Enhanced Optical Properties with Graphene Metamaterials, Journal of Physical Chemistry C 124 21075–21081 (2020).
[18]. Yuanlin Jia, Peiwen Ren, Chunzhen Fan*, Thermal tunable 1D photonic crystals containing phase change material, Chinese Physics B 29 104210 (2020).
[19]. Yuanlin Jia, Peiwen Ren, Junqiao Wang, Chunzhen Fan*, Erjun Liang, Thermal modulation of plasmon induced transparency in graphene metamaterials, ES Energy & Environment 7 4-11 (2020).
[20]. Junqiao Wang, Yanan Wu, Chunzhen Fan, Erjun Liang, Yan Li, Pei Ding, Unmodified hot spot in hybridized nanorod dimer for extended surfaceenhanced Raman scattering, Journal of Physics and Chemistry of Solids 136 109125 (2020).
[21]. Yanan Wu, Junqiao Wang,Mengke Ren, Wenhan Zhao, Ran Li, Chunzhen Fan, Erjun Liang, Yan Li, Pei Ding, Jinna He, Double-wavelength nanolaser based on strong coupling of localized and propagating surface plasmon, Journal of Physics D: Applied Physics 53 135108 (2020).
[22]. Chunzhen Fan*, Peiwen Ren, Wei Jia, Yuanlin Jia, Junqiao Wang, Tunable plasmon induced transparency in patterned graphene metamaterial with different carrier mobility, Superlattices and Microstructures 136 106295 (2019).
[23]. Peiwen Ren, Yuanlin Jia, Wei Jia, Chunzhen Fan*, Plasmon induced transparency in graphene with double asymmetric L strips, Journal of Optics 21 105101 (2019).
[24]. Wei Jia, Peiwen Ren, Yuanlin Jia, Chunzhen Fan*, Active control and large group delay in graphene based THz metamaterials, Journal of Physical Chemistry C 123 18560−18564 (2019).
[25]. Chunzhen Fan*, Yuchen Tian, Peiwen Ren, Wei Jia, Realization of THz dual band absorber with periodic cross-shaped graphene metamaterials, Chinese Physics B 28 076105 (2019).
[26]. Haoyi Xin, Chunzhen Fan, Junqiao Wang, Erjun Liang, Shuangmei Zhu, Synthesis of indium–silver bimetallic nanocomposites for surface enhanced Raman scattering, Optical Review 25 678-683 (2018).
[27]. Ziwen Ji, Huaping Zang, Chunzhen Fan, Junqiao Wang, Chenglong Zheng, Lai Wei, Chuanke Wang, Leifeng Cao, Fractal spiral zone plates, Journal of the Optical Society of America A 35 726 (2018).
[28]. Chunzhen Fan*, Shuangmei Zhu, Haoyi Xin, Yuchen Tian, Erjun Liang,Tunable and enhanced SERS activity of magneto-plasmonic Ag-Fe3O4 nanocomposites with one pot synthesize method, Journal of Optics, 19 015401 (2016).
[29]. Chunzhen Fan, Enhanced and controllable multilayer SERS substrate with composite layer, Advances in Intelligent systems research, Part 1, 2016.12 Atlantis Press, 51-55 (2016).
[30]. Chunzhen Fan, Shuangmei Zhu, Enhanced SERS activity induced by the Ag Rod-Fe3O4nanocomposite with different applied magnetic field, Advances in Intelligent systems research, Part 3, 2016.12 Atlantis Press, 447-450(2016).
專利
1. 一種三環結構的等離激元誘導透明光學材料及套用,ZL201710183483.7,國家發明專利,已授權,2019.1.22,第一發明人
2. 一種基於十字形石墨烯材料的太赫茲雙波帶吸收器及其套用,ZL201711121388.0,國家發明專利,已授權,2020.6.12,第一發明人
3. 一種實現電磁誘導透明的非對稱雙L型石墨烯結構的光學材料及其套用,ZL201811501579.4,國家發明專利,已授權,2020.12.4,第一發明人
4. 一種可調諧雙波長電漿納米雷射器及其光學材料,ZL202010495150.X,國家發明專利,已授權,2021.6.1,第一發明人

