Research Interests

Optical, optoelectronic, and microelectronic materials and devices

Spectroscopy and spectral analysis

Thin film optics

Optical fibre communications

Smart lighting and light health

Academic Service

Humboldt Research Fellow (Germany)

Member, Optical Society of America (OSA)

Leader, SPIE Fudan University Student Club

Member, Chinese Optical Engineering Society

Member, Technical Committee for Optical Thin Film Group Standards

Board Member, Shanghai Optical Society

Committee Member, Semiconductor Materials Specialised Committee, Shanghai Nonferrous Metals Society

Consulting Expert, Science and Technology Committee of Pudong New Area, Shanghai

Editorial Board Member, Chinese Optics

Long-term Reviewer for: Light: Science and Applications, Optics Express, Nanotechnology, J. Appl. Phys., Physica Status Solida A, Thin Solid Films, Small, Journal of Infrared and Millimeter Waves, Acta Optica Sinica, Chinese Journal of Semiconductors, Journal of Transduction Technology, and other academic journals.

Awards and Honours

1) 2001: Selected as a Fudan University Outstanding Young Backbone Teacher under the Star-of-the-Century Programme

2) 2003: National Technological Invention Award, First Prize, Ministry of Education (ranked fourth)

3) 2003: Chen Jiageng Youth Invention Award (Shanghai), Second Prize

4) 2004: Alexander von Humboldt Foundation Research Fellowship (Germany)

5) 2006: Special Fund for Shanghai Selection and Cultivation of Outstanding Young University Teachers

6) 2009: Fudan University Quality Course

7) 2010: Fudan-Hua Physics Teaching Award, Fudan University (academic year 2009)

8) 2010: 2009 Major Achievement in Optics in China (now renamed Top-10 Optics Advances in China)

9) 2011, 2012, 2013 and 2014: First Prize / Special Prize / Special Prize / Special Prize in Fudan University Student Affairs

10) 2013: Third Prize, Fudan University Young-Teachers' Teaching Competition

11) 2018: 1st Fudan University Rui-Jun Innovation Teaching Award (Outstanding Postgraduate Supervisor & Talent-Recruitment Contribution Award)

12) 2020: 50th-Anniversary Individual Contribution Award, Shanghai Laser Society

13) 2020–2025: Rui-Jun Innovation Teaching Awards 3rd through 8th editions, in each consecutive year.

Education and Work Experience

Education:

Sept. 1994 – Jul. 1999: Ph.D., Department of Physics, Fudan University

Sept. 1990 – Jul. 1994: B.Sc., Department of Physics, Central China Normal University

Work Experience:

Jan.–Feb. 2017: Senior Research Scholar, College of Engineering, University of Alabama in Huntsville (www.uah.edu), USA

Jul.–Aug. 2009: Exchange Scholar, School of Engineering and Technology, University of Hertfordshire (www.herts.ac.uk), UK

Jul. 2004 – present: Humboldt Research Fellow, German Federal Government; Jul. 2004 – Jan. 2006 and Jul.–Sept. 2006: Worked at Max Planck Institute of Microstructure Physics (www.mpi-halle.de), Germany

Aug. 2003 – Jul. 2004: Visiting Professor, College of Engineering, University of Kiel (www.uni-kiel.de), Germany

Sept.–Oct. 2001: Trained in optical processing technology at Leybold and LOH headquarters, Germany

Selected for Fudan University Century Star Programme for Outstanding Young Faculty, 2001

Jul. 1999: Ph.D., Department of Physics, Fudan University; began faculty appointment at Fudan

Current Major Research Projects as Principal Investigator:

NSFC Joint Project: Wide-spectrum optical properties and photodetector research on 2D transition metal dichalcogenide/gallium oxide heterojunctions (U2230108), 2023.1-2025.12, PI

National Key R&D Programme: Development and demonstration application of key sensors for medical imaging equipment (2021YFB2012601), 2021.11-2024.10, Task Lead

NSFC General Project: Preparation of silicon nano-array structures and experimental/theoretical study of their light transport properties (11674062), 2017.1-2020.12, PI

National Key R&D Programme International Science and Technology Innovation Cooperation Project: Nano-silicon-based stacked and superlattice luminescent films and devices (2016YE0110700), 2016.12-2018.12, Task Lead

Research Facilities (Major equipment in group):

Sample preparation: sputtering deposition system, chemical vapour deposition system, low-dimensional material transfer platform, intelligent automatic precision cutter, electrospinning machine, 3D printer, etc. Characterisation: spectroscopic ellipsometer, confocal Raman-fluorescence spectrometer, handheld Raman spectrometer, hyperspectral imaging system, polarisation microscope, film thickness tester, UV-Vis spectrophotometer, optical fibres and couplers, luminous flux testing system, optoelectronic test platform, universal testing machine, electrochemical workstation, etc. Software: small server and data processing software. The group possesses complete hardware and software research conditions for the preparation, characterisation, prototype device development, and application scenarios of various optoelectronic and microelectronic materials and devices. Over the past 20+ years, the group has maintained long-term and fruitful collaborations with outstanding research teams both domestically and internationally. Research results have been widely recognised. Awards include First Prize of National Technological Invention Award (Ministry of Education), and Top 10 Advances in Chinese Optics. Some results have been reported by Chinese Science News, Wen Hui Bao, Physics World (IOP), Fudan University official website, ScienceNet, Shangguan News, Chinese Optics, and other authoritative media.

Teaching

Core Compulsory Course for Master’s Students:

Thesis Writing and Literature Retrieval

Core Compulsory Course for Undergraduates:

Optical and Optoelectronic Measurements

Photonic Devices and Processes (Fudan University Excellent Course, 2009)

Professional Experiments in Optics (course development participant)

Production Internship

University Physics (Part 2) (School-wide platform course)

Core Course in General Education: Optics and Modern Life

Selected Publications

主要SCI-indexed papers(*为通信author):

123) Fang S.J., Zhou Q.Q., Yang S.Y., Li C.Y., Zhou M.Q., Hu C., Zhao X.B., Zhang W.L., Guo R.Q., Wei. X.L.*, Zhang R.J .* (2025) under review .

122)Zhou Q.Q., Fang S.J., Li C.Y., Zhou M.Q., Sui X., Hu C., Xu H.X., Yang S.Y., Lu B.Q., Zhang R.J .* Wei. X.L.*, (2025)under review.

12 1)Xie Y. F., Chen C., Wang J., Zhang S. W.*, Zhang R.J* ., Zhou C. H.., Laser Photonics Rev ., (2025) in press.

120) Liu S., Ding Y.F., Shi Y., Feng YZ, He R., Yu TY., Zheng Y.X., Li S.J., Zhang Z.P., Luo Y., Zhang R.J ., J. Mater Sci Technol (2025) in press .

119) Li J.H., Li Z.Z, Jin L., Zhou L.J, Ding K, Liu J.H, Hu B.F,..., Mei Y.F, Zhang R.J .*, Song E.M.*, Advanced Science (2025) e12114 .

118) Ding Y.F., Liu S,Tang HY,Shi WQ,Duan WB, Cai QY*,Zhang ZP,Li S.J, Zheng Y.X., Zhang R.J.* , Laser Photonics Rev ., (2025)e01936 .

117) Qin B., Wu Z.Q., Wang X.F., Li D., Wu P.Y., Chu Y.Z., Chen S.F., Zhang R.J ., Yao Q., Building and Environment ,285(2025)113589

116) Fu W., Li Z.L., Ding Y.F., Zhang M.J., Cui Y., Zhang H., Mo X.L., Zhang R.J. ,* Zuo G.Z.,* Advanced Optical Materials , (2025) e00362.

1 15) Qi J., Zhou H., He R., Zheng Y.X., Duan W.B., Zhang R.J.* ,Chu J.H., Applied Surface Science, 712(2025)164155.

114)Zhu R.Y., Yang S.Y., Yu N., Zhang R.J.* ,Wu M.F.*, Photodiagnosis and Photodynamic Therapy ,(2025) DOI:10.1016/j.pdpdt.2025.104624.

113)Wang N.Q., Wang C., Zhao Z.H,..., Zhang R.J.* , Yao Q.*, IEEE Photonics Journal, (2025) DOI: 10.1109/JPHOT.2025.3553420.

112) Zhou H.,Qi J,Fang SJ,Ma J,Tang H,Sheng C,Zheng Y,Zhang H,Duan W,Li S, Zhang R.J.* , Reports on Progress in Physics ,88(2025)050502 .

111) Fang S.J, Zhou QQ,ZhouMQ,Li CY,Xu HX,Tang HY,ZhangWL,GuoRQ,Wei X.L*, Zhang R.J.* , Light: Science & Applications , 14(2025)186 .

110) Sun X.J., Zhang H.T., He R., Guo J.P., Zhang R.J. , Zheng Y.X., Chen L.Y., Optical Engineering , 64(2025)027102 .

109) Liu Z.L, Liu M.X, Qi L.J, Zhang N., Wang B., Sun X.J, Zhang R.J. , Li D.B., Li S.J., Light: Science & Applications .14(2025)68.

108) Wang C., Xu H.X., Tang H.Y., Xin L.,Huang X.Y, Wang N.Q, Zhao X.B, Wei X.L*, Zhang R.J .*, Measurement ,246(2025)116701.

107) Tang H.Y*, Shi WQ, Ding YF, Qi J,Wu S, Liu WM,Wang GY,Fan J.J , Zhang R.J* ,Zhang G.Q, Applied Surface Science, 684(2025)161913 .

106) Shi WQ, Ding YF, Fang S.J., Zhou H., Qi J, Fan J.J , Zhang R.J* ,Zhang G.Q., Tang H.Y.*, Applied Surface Science, 683(2025)161848 .

105) Zhou H., Zhu X.D, Liu W.M., Liu S., Ding Y.F., Zhang Q.C., Zhang Z.P.*, Zhang R.J.* , Applied Surface Science, 672(2024)160851 .

104) Ding Y.F, Zhu X,Tang H.,...,Zheng Y.,Cong C.,Luo S.Y*, Zhang R.J.* , Science China-Materials (2024)doi.org10.1007s40843-024-3031-0.

103) Liu S.,Zhu XD,Tang HY,Cong CX,Luo SY,Luo Y,Zheng YX,Chen LY,Zhang ZP, Zhang R.J* , Surfaces and Interfaces , 47(2024)104189.

102) Yang Z.D, Wang XY, Zuo Y.H,..., Tang H.Y.*, Zhang R.J* ., Fan X.J., Zhang G. Q., Fan J. J.*, Laser Photonics Rev ., (2024)2401033.

101)Yang Z.D., Wang X.Y., Chen W., Tang H.Y.*, Zhang R.J* ., Fan X.J., Zhang G. Q., Fan J. J.*, Laser Photonics Rev ., (2024)2301300.

100) Liu W.M , Zhu X.D.,Ding Y.F,Tang H.Y, Xu P.R, Huang T.T,Zheng Y.X,Chen X, Zhang R.J.* , Ceramics International ,50(2024)19856.

99) Zhu X.D, Liu W.M , Sheng CX, Cong CX, Chen X, Tang HY, Li SJ, Chu JH, Zhang R.J.* , ACS Appl. Mater. Interface s ,16 (2024)15446 .

98) Xu W. Q., Yao Q., Wu P. Y., Zhang R. J ., Zhu W., Li P. F. and Bao L. M., Displays , 82(2024)102669.

97) Wang C., Wang L.,Wang N.Q, Wei X.L,Feng T,Wu M.F*,Yao Q*, Zhang R.J* , Computers in Biology and Medicine ,168(2024)107803.

96) F eng YZ,Chen R,He JB,...,Zhu X,Liu W, MaW, ShenW, Hu C,Sun X,Li D.B*, Z hang R.J* ,Li P*,Li S.J*, Nat. Commun ,14(2023)6739.

95) Wang H., Zhang R.J. and Cun Y., Light: Science & Applications , 12:108(2023)955-964.

94) Ma C., Chen G, He J.B, Fang S.B, Wang C, Cai Q.Y, Duan W.B, Liu D.Q, Zhang R.J *, Optics Express , 31(2023)41458.

93) He J.B., Chen C, Liu WM, Zhu XD, Zheng YX, Chen LY, Zhang R. J *, J. Phys. D: Appl. Phys ., 56(2023)395102.

92) Xu W.Q., Wu P.Y, Yao Q, Zhang R. J. , Li P.F., Bao L.M, Wang C., Chen S.F, et al., Optics Express , 31(2023)10420.

91 )Zhu X.D,He J.B,Liu WM,Zheng YX,Sheng CX,Luo Y,Li S.J*, Zhang R.J *,Chu JH, ACS Appl. Mater. Interfaces ,15(2023)2468.

90) Liu W.M,He J.B,Zhu X.D,Huang T.T,Chen X,Zheng Y.X,Chen L.Y, Zhang R.J .*, Thin Solid Films ,766(2023)139655.

89) Li C., Tu H.T, Zheng Y.X, Wang S.Y, Zhang R .J ., Zhao H.B,Yang Y.,Chen L.Y, Thin Solid Films , 764(2023)139593.

88) Wang C., Zhang R. J ., Wei X.L, Wang L., Wu P. Y., Yao Q., Biomedical Optics Express , 14,2(2023)866-882.

87) Wang C., Zhang R. J ., Wei X.L, Wang L., Xu W. Q.. Yao Q.*, Photodiagnosis and Photodynamic Therapy , 41(2023)103217.

86) Wang C., Zhang R. J ., Jiang Y.F., Li J. Y., et al., Photodiagnosis and Photodynamic Therapy , 37(2022)102711.

85) Wang C., Ma C., He J., Liu W., Zhu X., Fang S., Zhang R. J.* , Mater Sci Semicond Process ,142(2022)106454.

84) Fang S.B., Ma C., Liu W.M, He J.B, Wang C., Chen G., Liu D.Q, Zhang R. J.* , Appl. Phys. A ,128(2022)1097.

83) He R., Chen C, Shen R.Y, Hu E.T, Zhang R.J. , Chen L.Y and Guo J.P., J. Optical Society America B ,39(2022)925.

82) He J. B,Zhu X., Liu W., Hu E., Wang J., Zhang R. J.* , Nano Research , (2022)DOI:10.1007/s12274-022-4232-7.

81) Wu Y, He J. B,Chen Y, Kong M. R,Zhang Y,Hu X,Lian J.W,Zhang H*, Zhang R.J* , Nanoscale ,14(2022)5462-5471.

80) Wu Y., Hou B.W., Chen Y., Cao J....., Zhang R.J .*, and Zhang H.*, npj Computational Materials , 7(2021)145.

79) Wu Y., Hou B.W., Ma C.C, ..., Zhang R.J .*, and Zhang H.*, Materials Horizons ,8,4(2021) 1253-1263.

78) Liu W. M., Zhu X. D., ...,Chen X., Zhang R. J.* ., Phys. Status Solidi RRL ,15(2021)DOI:10.1002/pssr.202100411.

77) Xing G.H., Zhang S. W.*, Mi X. T., Zhang R. J.* , Optics Express , 29,17(2021)26444-26455.

76) Tu H., Zheng Y.X., Shan Y., Chen Y., Zhang H.T., Zhang R. J. , Wang S. Y., Li J., et al., Crystals , 11(2021)349.

75) Yin C.Y., Zhu M. P.*, Zeng T.T., Sun J., Zhang R. J. , Zhao J L., et al., Optical Materials Express , 11(2021)875.

74) Zhu X. D., He J. B., Zhang R. J.* , Cong C. X, Zheng Y.X, Zhang H, et al., Nano Research ,15,3(2021) 2674-2681.

73) Zhu X. D., He J. B., Zhang R. J.* , Cong C.X., Zheng Y.X, Zhang H., Zhang S.W, et al, Nanoscale ,12(2020)23732.

72) Zhu X. D., Li D.H., Zhang R.J.* , Zhang H, Cong C.X, Zhu M.P, et al, Applied Suface Science ,519(2020)146262.

71) He J. B., Jiang W, Zhu X.D, Zhang R. J.* , Wang J.L, Zhu M.P. et al., Phys. Chem. Chem. Phys., 22(2020)26383.

70) Chen C., Wu Y., He. R., Zhang R. J.* , Chen L. Y. and Guo J. P., J. Optical Society America B , 37(2020)2906.

69) He R., Chen C., Zhang R. J. , Chen L. Y. and Guo J. P., Optics Express , 28 (2020) 32456.

68) Wu Y., Chen Y., Ma C.C., Lu Z.X., Zhang H.*, ... Zhang R.J. *, et al., Phys. Rev. Materials , 4(2020)064001.

67) Wu Y., Ma C.C., Chen Y., Mortazavi B., Lu Z. X., ... Zhang R. J .*, Materials Today Physics , 12(2020)100164.

66) Wu Y., Xu K., Ma C.C., Che Y., Lu Z.X., Zhang H.*, Fang Z.L., Zhang R.J .*, Nano Energy ,63(2019)103870.

65) Zhou Y., Li X.S., Li S., Guo Z. H., Zeng P., He J. B., Wang D. C., Zhang R.J . et al., Optics Express , 27(2019)

64) Hu F., Dai X.Y., Zhou Z.Q., Kong X.Y., Sun S.L., Zhang R.J. , Wang S.Y., Lu M., Optics Exprss ,27(2019)3161.

63) Zhang J. B., Zhang D.X., Zheng Y.X., Zhang R.J ., Wang Z.Y. et al., Applied Surface Science ,465(2019)532-536.

62) Zeng T. T., Zhu M. P., Chai Y. J., Zhang R. J ., Liu H. S., Yin C. Y., et al., Optical Engineering , 57(2018)086114.

61) Wang J. J., Wang Z. Y., Zhang R. J ., Zheng Y. X., et al., Phys. Chem. Chem. Phys ., 20(2018)18110-18116.

60) Zheng H., Zhang R. J.* , Li D.H, Chen X, Wang SY, Zheng YX. et al., Nanoscale Research Letters ,13(2018)149.

59) Fan X.L, Wang Y,Zhou W,Ren X.J,Hu Z.F,Liu QY, Zhang R.J. et al, IEEE Photonics Journal ,10(2018)1500308.

58) Wang Z. Y., Zhang R. J. *, and Guo J. P.*, Optics Express , 26(2018)496,-504 DOI: 10.1364/OE.26.000496.

57) Shi Y. J., Zhang R. J.* , Chen X., Wang L., Chen L., et al., Phys. Chem. Chem. Phys ., 20(2018)25467-25475.

56) Shi Y. J., Zhang R. J.* , Li D.H., Zhan Y. Q., and Lu H. L., et al. J. Phys. D: Appl. Phys ., 51(2018)085301.

55) Shi Y. J., Zhang R. J. *, Zheng H., Li D. H., Wei W., Chen X. et al., Nanoscale Research Letters , 12(2017)243.

54) Xu Y.F., Zhang H., Shao H. Z., Ni G., Li J., Lu H.L., Zhang R. J ., et al., Phys. Rev. B ., 96(2017)245421.

53) Wang Z. Y, Cao X., Qiao C., Zhang R. J ., Zheng Y.X., Chen L.Y., Wang S.Y., et al., Nanoscale , 9(2017)19310.

52) Waleed A,Tavakoli M,Gu L,Hussain S,Zhang D,Poddar S,Wang ZY, Zhang R.J. ,Fan Z.Y, Nano Lett. ,17(2017)4951

51) Waleed A, Tavakoli M,Gu L, Wang Z,..., Zhang RJ , Fan ZY, Nano Lett .,17(2017)523. [ESI Highly Cited Paper]

50) Huang R.Z., Chen C., Li C. M., Jiang C. H., Zhang R. J. , Gao Y., Applied Surface Science , 419(2017)45-51.

49) Li D. H, Zhai C. H, Zhou W.C,..., Chen L, Chen X, Zhang R. J .*, Nanoscale Research Letters , 12 (2017)563.

48) Li D. H., Zheng H., Wang Z. Y., Zhang R. J .*, Zhang H., et al., Phys. Chem. Chem. Phys .19 (2017)12022-12031.

47) Li D. H., Song X. F., Xu J. P., Wang Z. Y., and Zhang R. J .*, et al., Applied Surface Science, 421(2017)884-890 .

46) Li D. H., Song X. F., Hu L. F., Wang Z. Y., Zhang R.J .* ,Chen L.Y., et al., Chinese Physics B , 25(2016)047304.

45) Wang Z.Y., Yuan S.J, Li D. H., Jin F., Zhang R. J .*, Zhan Y.Q.*, et al., Optics Express , 24(2016)A1431-1443.

44) Xu Y.F., Peng B., Zhang H., Shao H. Z., Zhang R. J ., and Zhu H. Y., Annalen der Physik , 529: 4(2016)1600152.

43) Zheng H., Zhang R.J .*, Xu J. P., Wang S.X., Zhang T.N., Sun Y, et al., J. Phys. Chem. C ,120(2016)22532-22538

42) Zhai C.H., Zhang R.J. *,Chen X., Zheng Y.X., Wang S.Y., Liu J., et al, Nanoscale Research Letters ,11(2016)407

41) Zhang M. Y., Wang Z. Y., Zhang T. N., Zhang Y., Zhang R. J.* , et al. J. Nanophotonics , 10,3(2016)033009.

40) Peng B., Zhang H., Shao H.Z., Xu Y.F., Ni G., Zhang R. J . and Zhu H.Y., Phys. Rev. B , 94(2016)245420.

39) Peng B., Zhang H., Shao H.Z, Xu Y.F, Zhang R. J ., et al, ACS Appl. Mater. Interfaces ,8(2016)20977-20985.

38) Peng B,Zhang H,Shao H.Z.Xu Y.F, Zhang R.J ,et al, J. Mater. Chem. C ,4,16(2016) 3592 . [ESI Highly Cited Paper]

37) Zhang J.B.,Zheng Y.X*,Wang Z.Y.,Wang S.Y., Zhang R.J. , et al., J. Phys. Chem. C ,120,14(2016)7822-7828.

36) Wang Z. Y., Huang L., Yue G. Q., Shen B., Dong F., Zhang R.J. , et al, J. Phys. Chem. B ,120(2016)9223-9229.

35) Wang Z. Y., Dong F., Shen B., Zhang R.J ., Zheng Y. X., Chen L. Y., Wang S. Y.*, et al., Carbon , 101(2016)77-85

34) Xu J. P., Zhang R. J .*, Zhang Y., Wang Z. Y., Chen L., et al., Phys. Chem. Chem. Phys. 18(2016)3316-3321.

33) Hu E.T., Cai Q. Y., Zhang R. J.* , Wei Y. F, Zhou W. C, Wang S Y, et al., Optics Letters , 41:21(2016)4907-4910 .

32) Hu E.T., Zhang R. J. *, Cai Q Y., et al., Appl. Phys. A: Materias Science & Processing, 120(2015) 875-879.

31) Hu E.T., Yue G. Q., Zhang R. J ., Zheng Y.X., Chen L.Y., Wang S.Y.*, Renewable Energy , 77(2015)442-446.

30) She n B, Wang Z.Y, Dong F, Guo Y.R, Zhang R.J , Zheng Y.X., et al., J. Phys. Chem. B ,119(2015)14945-14951.

29) Sun Y.S.N., Huang R.Z.*, Gao T. F., Zhang R.J. , Wang Y. M., Applied Surface Science , 327(2015)344-349.

28) Yue G.Q.,Zhang Y.,Sun Y, S hen B., Dong F, Wang Z. Y., Zhang R. J et. al., Scientific Reports, 5(2015)8277.

27) Wang Z. Y., Zhang R. J . * ,Wang S.Y*, Lu M. et al., Scientific Reports, 5(2015)7810 .[ESI Highly Cited Paper]

26) Wang Z. Y., Zhang R. J . * , Tang B., Sun Y. C., et al, J. Infrared and Millimeter Wavers , 34(2015)663-667 .

25) Wang Z. Y., Zhang R. J . * , Lu H.L., Chen X., Sun Y., et al, Nanoscale Research Letters , 10(2015)46.

24) Xu J. P., Zhang R. J . * , Chen Z. H., Wang Z. Y., et al., Nanoscale Research Letters , 9(2014)118 .

23) ZhangDX,ShenB,ZhengYX,WangSY,ZhangJB,YangSD, Zhang R J et al, Appl. Phys. Lett ,104(2014)121907

22) Lin W., Zheng Y.X.*, Zhang R. J . * , et al., Appl. Phys. A: Materials Science & Processing ,114:2(2014)423-427.

21) Liu L., Huang R.Z., Sun Y.S.N., Du C.C., Zhang R.J ., et al., Applied Surface Science, 290(2014)405-411.

20) Zhang F., Zhang R. J * ., Zhang D. X., Wang Z. Y., Xu J. P.,et al., Appl. Phys. Express. 6(2013) 121101.

19) Zhang F., Zhang R. J * ., Zheng Y.X., Xu Z.J., Zhang D. X., et al., Physica Status Solidi A , 210(2013)2374.

18) Zhang F., Zhang R. J * ., Zheng Y.X., Xu Z.J., Zhang D. X., et al., Thin Solid Films , 548(2013) 275-279.

17) Xu Z.J., Zhang F., Zhang R. J * ., et al., Appl. Phys. A – Materials Science & Processing , 113,3(2013) 557-562.

16) Zhang D.X, Zheng Y.X, Cai Q.Y, Lin W., Wu K.N, Mao P.H, Zhang R. J* . et al, Appl. Phys. A , 108(2012)975-979.

15) Yang W.J., Huang R.Z., Liu L, Wang L.F., Zhang R. J. , et al., J. Nanoparticle Research 14(2012) 1256.

14) Yu X., Zhang R. J * . Xu Z.J., Zhang D. X., Zhao H.B., et al., J. Non-Crystalline Solids , 357 (2011) 3524–3527.

13) Cai Q. Y., Zheng Y. X., Zhang D. X., Lu W. J. and Zhang R. J . , et al., Optics Express , 194(2011)12969-12977.

12) Cai Q. Y., Zheng Y. X., Mao P. H., Zhang R. J . . et al., J. Phys. D: Appl. Phys. , 43(2010)445302.

11) Zhang R. J * . Chen Y. M., Lu W. J., Cai Q. Y., Zheng Y. X., Chen L. Y., Appl. Phys. Lett ., 95(2009)161109.

10) Seo S. Y., Zhang R. J . , Loeffler W., Kalt H., Kim K. J., Zacharias M., J. Appl. Phys ., 106(2009)123102.

9) Mao P. H., Zheng Y. X., Chen. Y. R., Cai Q. Y., Zhang R. J . , et al., Optics Express ,17,10(2009) 8641-8650.

8) Chen Y. M., Zhang R. J * , Zheng Y. X., Mao P. H., et al., J. Korean Physics Society , 53(2008)2299-2302.

7) Feng S. Z., Zhang R. J ., Zheng Y. X., Li J., Mao P.H., et al., J. Korean Physics Society , 51(2007)1593-1597

6) Zhang R. J . , Seo S. Y., Milenin P., Zacharias M., Goesele U., Appl. Phys. Lett . 88 (2006)153120.

5) Zhang R. J. , Chen D. Y., Zheng Y. X., et al., J. Infrared and Millimeter Wavers , 22,1(2003)56-58.

4) Zhu, X.S., Zhao, H.B., Zhang R. J. , et al., Applied Optics, 41(2002) 2592-2595.

3) Zhang R. J. , Li H.Y., Zhu X. S., Zhou P., et al., J. Infrared and Millimeter Wavers , 20(2001)57

2) Xia, G. Q., Zhang R. J . ., Chen Y. L., et al., Rev. of Scientific Instruments , 71 (2000)2677-2683.

1) Zhang R. J ., Chen, L.Y., Wang S. Y., Qian D. L.,et al. J. Appl. Phys . 85, 8 (1999)5118-5120.

Researcher (Publons)ID : http://www.researcherid.com/rid/B-1436-2012

ORCID: https://orcid.org/0000-0002-1798-9922

中文journal主要 papers( SCI、 EI indexed ) :

21) 孙晓洁, 高梦宇, Zheng Yuxiang, Zhang Rongjun , Wang Songyouet al., 辐射冷却材料 研究进展及应用, Journal of Infrared and Millimeter Waves ,41:1(2022)230-247.

20) 朱绪丹, Zhang Rongjun *, Zheng Yuxiang, Wang Songyouet al., 椭圆偏振光谱测量技术及其in薄膜材料研究中 应用, ChinaOptics ,12:6(2019)1195

19) 郑华,樊华,Wang Ziyi,魏彦锋, Zhang Rongjun *,碲镉汞红外探测器增透结构设计, Research and Exploration in Laboratory ,36:1(2017)46-48,53

18) 江智宇, Wang Ziyi, 王金金, Zhang Rongjun et al. , 银纳米颗粒及阵列光传输性质 理论研究, Acta Physica Sinica , 65:20(2016) 207802.

17) 徐子杰, Zhang Rongjun *,张帆,俞翔 et al.,Y分支平面波导型光分路器 研制, Research and Exploration in Laboratory , 32:7(2013) 5-7,27.

16) Wang Ziyi, Zhang Rongjun *,Zheng Yuxiang et al., AFM扫描参数对样品粗糙度测量 影响研究, Research and Exploration in Laboratory , 32:2(2013)5-7.

15) Wang Ziyi, Zhang Rongjun *, 徐蔚et al..Based on全反射 LED-照明光纤耦合器 设计and研制, Acta Optica Sinica ,32(2012)0922007[EI-indexed]

14) 陈剑科, 陆卫杰, Wang Songyou, Li Jing, Zhang Rongjun et al.,二维+光栅折叠光谱分析仪 研制, 分析仪器 , No.2(2012)1-5.

13) Zhang Rongjun , Zheng Yuxiang, Chen Liangyao,光纤通信WDM系统用带通滤波片, Research and Exploration in Laboratory , 30:3(2011)11-13.

12) Zhang Rongjun , 陆卫杰, 蔡清元 et al.. 硅纳米晶体 椭圆偏振光谱研究, Acta Optica Sinica ,30(2010)1891-1894.[EI-indexed]

11) Zhang Rongjun , 陈一鸣, 蔡清元 et al.. 硅纳米晶体and尺寸相关 介电函数谱, Chinese Journal of Lasers and Optoelectronics Progress , 47:3(2010)03SC12.

10) Zhang Rongjun , 姚明远, Zheng Yuxiang, Chen Liangyao, 反射式RAP 型椭圆偏振光谱仪及其应用, Research and Exploration in Laboratory ,29:3(2010)30-34.

9) Zhang Rongjun , Zheng Yuxiang, Li Jing et al., 单模光纤 色散和损耗特性测量系统, Research and Exploration in Laboratory ,28:10(2009)29-31,47.

8) 陆卫杰, Zhang Rongjun *, 陈一鸣 et al.. 可扩展Optics薄膜mapping测量平台 设计and实现, ChinaLasers , 36(2009)1555. [EI-indexed]

7) Zhang Rongjun , 陈一鸣, Zheng Yuxiang, Chen Liangyao. 硅发光研究and进展, ChinaLasers ,36(2009)269-275. [EI-indexed]

6) Zhang Rongjun ,我国光通信元器件技术标准 研究and建设 思考, Shanghai标准化 , (2003)No.1, 39-41.

5) Zhang Rongjun , 周鹏, 李莉, Wang Songyou, Chen Liangyao. 新型红外反射式偏振器 设计and研制, 半导体光电 , 24(2003)399-401.[EI-indexed]

4) Zhang Rongjun ,光纤通信元器件技术标准研究 现状and建议, 网络电信 , (2002)No.9, 58-61.

3) Zhang Rongjun , 周鹏, 张颖君, Zheng Yuxiang, Chen Liangyao,Fe(1-x)CoxSi2 薄膜 Optics性质研究, 光电子*Lasers .,12(2001)781-784.[EI-indexed]

2) Chen Yueli, Zhang Rongjun , 夏国强 et al.,双重傅里叶变换红外椭偏光谱系统 研制, Acta Optica Sinica ,21(2001)729-733. [EI-indexed]

1) 马万里, Chen Liangyao, 周仕明, Zhang Rongjun et al.,消色差 1/4波长延迟器 几何Optics设计, 光子学报 ,No.2(2001)236.[EI-indexed]

, editor情况:

1). Zheng Y. X.*, Zhang R. J.* and Chen L. Y., Chap. 3 : Ellipsometry and its applications in stoichiometry ,in book: Stoichiometry and Materials Science - When Numbers Matter. Edited by Alessio Innocenti and Norlida Kamarulzaman、ISBN 978-953-51-0512-1、InTech — Open Access Company,April. 11, 2012.

2). Zhang Rongjun ,参and编写第六版《 十万个为什么 》(物理Vol.∙Optics),少年儿童PressAugust 2013published。

3). Zhang Rongjun ,张帆,陈佳亦,沈璐,哇!灯光网,《 少年science 》,3(2014)4-7.

4). Zhang Rongjun ,合译英文学术专著 《 Photoemission studies of high temperature superconductor 》一书。独立翻译第八章,合译第五章,全书约40万字。Shanghaiscience技术文献PressJuly 2002published。ISBN: 7-5439-1976-1/O.129。

ChinaPatent:

主要授权Patent:

1. Zhang Rongjun ,王程,刘未名,姚其,Zheng Yuxiang,Chen Liangyao,一种Based on自由曲面 高效率LED光纤照明耦合器。实用新型Patent No.: ZL2021 2 0982335.3, Granted on: December 20217日.

2. Zhang Rongjun ,陈成,Chen Liangyao,Zheng Yuxiang,Wang Songyou,一种近红外可调谐窄带滤波器。发明Patent No.: ZL201910951575.4, Granted on: November 202116日.

3. Zhang Rongjun , Zheng Yuxiang,Chen Liangyao,张帆,林崴,耿阳,卢红亮,一种Based on椭偏仪 薄膜温度测量方法,发明Patent No.: ZL201110354870.5,Granted on: August 201321日.

4. Zhang Rongjun ,Chen Liangyao,Zheng Yuxiang,Li Jing,Wang Songyou,陆明,一种新型硅纳米晶 制备方法。发明Patent No.: ZL200610118916.2, Granted on;October 200914日.

小组成员

高级访问学者 :

Huang仁忠 教授(Shen Yang师范大学,2012-2013);

Yu Min-Feng 教授(Georgia Institute of Technology,2012-2013)。

陈 鑫 研究员(Chinascience院Shanghai技术物理研究所,2007-2008)。

博士后 (in站工作时间,去向。备注 ) :

朱绪丹 (2022.6-2024.6,Shanghai宇量昇科技有限公司。Shanghai市超级博士后)

Has 获学位学生(Obtained学位时间、去向。备注) :

博士生 :

马 冲(2025 Summer、Chinascience院Shanghai技术物理研究所)

徐文倩(2025 Summer、扬州市职业大学)

刘未名 (2024 Summer,长鑫存储技术有限公司)

王 程 (202 3 Winter,安徽师范大学 )

何君博(2023 Summer,睿励science仪器(Shanghai)有限公司)

吴 钰(2022 Summer, 电子科技大学长三角研究院(湖州)。 2020 — National Scholarship recipient、2022Shanghai市优秀毕业生)

朱绪丹(2022 Summer,Fudan大学。2021 — National Scholarship recipient)

Li Dahai(2019 Summer、United StatesKLA-Tencor半导体设备技术公司。2017 — National Scholarship recipient)

范旭亮(2018 Summer、江苏省委组织部选调生。联合培养)

Wang Ziyi(2018 Summer、英特尔China大连分公司。2015 — National Scholarship recipient、2018Shanghai市优秀毕业生)

硕士生 :

王诺祺(2025 Summer、香港理工大学)

陈 成( 2021 Summer、Fudan大学 )

石跃杰(2019 Summer、United StatesKLA-Tencor半导体设备技术公司。2018 — National Scholarship recipient、2019Shanghai市优秀毕业生)

郑 华(2018 Summer、Shanghai中兴软件有限责任公司,2024获中兴青年奖)

翟晨慧(2017 Summer、Shanghai中兴软件有限责任公司)

张铭颖(2016 Summer、China国家知识产权局)

许骥平(2016 Summer、招商银uplink信用卡中心。2014 — National Scholarship recipient)

张 帆(2014 Summer、中南大学。2013 — National Scholarship recipient)

徐子杰(2013 Summer、鼎桥通信技术有限公司)

俞 翔(2013 Summer、浙江省发展规划研究院)

陆卫杰(2011 Summer、United StatesKLA-Tencor半导体设备技术公司)

陈一鸣(2009 Summer、Shanghai贝尔阿尔卡特股份有限公司)

冯守志(2007 Summer、Shanghai航天局第808所)

工程硕士 :

薛 旗 ( 2025 Autumn、 银联数据公司 ) Huang志uplink (2025 Autumn、西门子能源) 许圣祥 (2024冬、KLA-Tencor)

张仔妮 (2024冬、嘉友国际)、 叶启田 (2024秋、法国攻博)、 田冬敏 (2024秋、中洲特材公司)、

杨袁鑫 (2024夏、思爱普China公司)、 张明鉴 (2024夏、普洛斯融资租赁)、 刁宇婴 (2023冬、Fudan大学)、

翟小芹( 2023 Summer、Fudan医)、 孙君竹( 2023 Winter、涛合贸易公司)、 叶 甜 (2023 Winter、汉高China公司)、

潘俊杰 ( 2017 Summer、施耐德电气)、 吴 剑 ( 2017 Summer、尼康China)、 穆吉儒 (2016 Winter、China电科51所)、

史庭梁 (2016 Winter、杜邦公司)、 张瑞琪 (2016 Winter、施耐德电气)、 曾毅杰 (2015 Winter、欧姆龙)、

+嘉杰 (2015 Winter、开利空调)、 张 勤 (2015 Winter、施耐德电气)、 王 胜( 2015 Winter、宝信软件)、

王 众 (2015 Summer、特灵空调)、 鲍清华 (2014 Winter、高通公司)、 李志锋 (2014 Winter、综艺光伏)、

Huang可伟 (2014 Summer、西蒙通信)、 施俊亮 (2013 Winter、SONYChina)、 王蔚为 (2013 Winter、United StatesIMSH公司)、

邬树纯 (2013 Summer、China电科51所)、 李 蕾 (2012 Summer、保点China)、 朱拥建 (2012 Summer、China电科51所)、

康明厂 (2011 Winter、宝钢集团)、 王玲叶 (2011 Winter、SONYChina)、 王志诚 (2011 Winter、中芯国际)、

赵 蓓 (2011 Winter、中芯国际)、 朱 熹 (2011 Winter、华虹NEC)、 高树才 (2011 Summer、China电信承德公司)、

闫 东 (2010 Winter、Shanghai煤炭science研究院)、 张同超 (2010 Summer、China电科23所)、 谭小花 (2009 Summer、China电科51所)

本科生 :

杨士逸 ( 2024 Summer、Fudan大学攻硕 )

覃 榜 ( 2023 Summer、Fudan大学攻硕)、 孔明然 (2023 Summer、英国攻硕)、 方绍博 (2020 Summer、Fudan大学攻硕)

耿 元( 2018 Summer、英国攻硕)、 石跃杰 (2016 Summer、Fudan大学攻硕)、 郑 华 (2015 Summer、Fudan大学攻硕)、

陈 功 (2014 Summer、Singapore攻硕)、 邹方堃 (2014 Summer、Shanghai汉得)、 王 平 (2013 Summer、Shanghai优盟)、

许骥平 (2013 Summer、Fudan大学攻硕)、 Wang Ziyi (2012 Summer、Fudan大学攻博)、 华 波 (2011 Summer、香港攻硕)、

项春彧 (2011 Summer、法国攻硕)、 俞 翔 (2010 Summer、Fudan大学攻硕)、 陈立凡 (2010 Summer、United States攻博)、

李 琼 (2009 Summer、交通银uplink)、 姚明远 (2009 Summer、Fudan大学教师)、 陆卫杰 (2008 Summer、Fudan大学攻硕)、

陈玉博 (2007 Summer、China联通Shen Yang)、 吴 声 (2006 Summer、United States攻博)、 王 乾 (2003 Summer、United States攻博)

in读学生 :

博士生 :

刘 双 (2022级,直博生)

周 红(2022级,直博生)

黎家豪(2022级,工程博士)

齐 姣(2023级)

方绍钧(2023级,工程博士, 2025 — National Scholarship recipient)

丁依凡(2024级,硕博连读、工程博士)

施伟琪(2025级,硕博连读)

朱子健(2025级,直博生)

硕士生 :

覃 榜(2023级, 2025 — National Scholarship recipient)

赵宣博(2023级,专业学位)

杨士逸(2024级)

本科生 :

本组常年招收海内外相关专业博士后。

本组招收学术学位、专业学位博士、硕士Postgraduate!

欢迎物理、Optics工程、材料、微电子(工艺方向)、电子scienceand技术、通信scienceand技术et al.相关学科优秀学生加盟!

联系邮箱:rjzhang@fudan.edu.cn