
1、 基本情況
唐濤,男,湖北仙桃人,1981年9月出生,武漢大學物理學院本科畢業。桂林電子科技大學通信與信息系統工學碩士,南京大學物理學博士。現為9728太阳集团首页教授。
主要從事碳材料、鉛鹵鈣钛礦系列材料的制備、光電、輸運及自旋特性研究。主持國家自然科學基金1項,廣西自然科學基金項目2項。近年來已經在Applied Physics Letters、Scientific Reports、Journal of Applied Physics、Carbon等期刊發表了多篇論文。獲得國家發明專利4項。
2、 個人主要經曆
1998.09~2002.06,武漢大學材料物理系,本科。主要從事鈣钛礦結構材料的巨磁電阻效應研究;
2002.07~至今, 9728太阳集团首页理學院工作。講授光學、信号與系統、光通信技術、信息論等課程;
2006.09~2011.06,桂林電子科技大學通信與信息系統學院,碩士,主要從事無線通信系統的設計、信道特性分析研究;
2012.09~2015.06 南京大學物理學院,博士。主要從事石墨烯系列材料的制備與磁性、輸運及發光特性研究。
2018.04~2019.04 新加坡南洋理工大學物理與應用物理系,從事博士後(訪問)研究。主要研究鉛鹵鈣钛礦材料的光學性質。
3、 近期科研成果
[1] Guo, Z.; Wu, H.; Li, M.; Tang, T.; Wen, J.; Li, X. Phosphorus-doped graphene quantum dots loaded on TiO2 for enhanced photodegradation. Appl. Surf. Sci. 2020, 526. https://doi.org/10.1016/j.apsusc.2020.146724.
[2] Xu, D. D.; Xuan, C. X.; Li, X. Y.; Luo, Z. B.; Wang, Z.; Tang, T.; Wen, J. F.; Li, M.; Xiao, J. R. Novel helical carbon nanotubes-embedded reduced graphene oxide in three-dimensional architecture for high-performance flexible supercapacitors. Electrochim. Acta 2020, 339, 9. https://doi.org/10.1016/j.electacta.2020.135912.
[3] Ke, W. G.; He, S. N.; Le, W. T.; Liu, Y.; Zhang, F. L.; Tang, T.; Zheng, Y. P.; Chen, J.; Chen, M. M.; Cao, D. W. Synthesis of nitrogen-superdoped and graphene fiber-supported three-dimensional graphene foam for supercapacitors. Journal of Materials Science 2020, 55, 6952-6962. https://doi.org/10.1007/s10853-020-04496-8.
[4] Tang, T.; Wu, L. T.; Gao, S. Q.; He, F.; Li, M.; Wen, J. F.; Li, X. Y.; Liu, F. C., Universal Effectiveness of Inducing Magnetic Moments in Graphene by Amino-Type sp3-Defects. Materials 2018, 11, 616.
[5] Li, X. Y.; Xu, Y. J.; Hu, G. H.; Luo, Z. B.; Xu, D. D.; Tang, T.; Wen, J. F.; Li, M.; Zhou, T. Y.; Cheng, Y., Self-assembled formation of conjugated 3D reduced graphene oxide-wrapped helical CNTs nanostructure and nitrogen-doped using photochemical doping for high-performance supercapacitor electrodes. Electrochim. Acta 2018, 280, 33-40.
[6] Luo, Y.; Li, M.; Hu, G. H.; Tang, T.; Wen, J. F.; Li, X. Y.; Wang, L., Enhanced photocatalytic activity of sulfur-doped graphene quantum dots decorated with TiO2 nanocomposites. Mater. Res. Bull. 2018, 97, 428-435.
[7] Xu, Y. J.; Feng, Y. K.; Li, X. Y.; Hu, G. J.; Luo, Y.; Sun, L.; Tang, T.; Wen, J. F.; Wang, H.; Li, M., Direct Formation of Reduced Graphene Oxide and Graphene Quantum dot Composites by Using Ascorbic Acid as High Performance Binder-Free Supercapacitor Electrodes. Int. J. Electrochem. Sci. 2017, 12, 8820-8831.
[8] Xu, Y. J.; Li, X. Y.; Hu, G. H.; Wu, T.; Luo, Y.; Sun, L.; Tang, T.; Wen, J. F.; Wang, H.; Li, M., Graphene oxide quantum dot-derived nitrogen-enriched hybrid graphene nanosheets by simple photochemical doping for high-performance supercapacitors. Appl. Surf. Sci. 2017, 422, 847-855.
[9] Sun, L.; Luo, Y.; Li, M.; Hu, G. H.; Xu, Y. J.; Tang, T.; Wen, J. F.; Li, X. Y.; Wang, L., Role of Pyridinic-N for Nitrogen-doped graphene quantum dots in oxygen reaction reduction. J. Colloid Interface Sci. 2017, 508, 154-158.
[10] Luo, Y.; Li, M.; Sun, L.; Xu, Y. J.; Hu, G. H.; Tang, T.; Wen, J. F.; Li, X. Y., Tuning the photoluminescence of graphene quantum dots by co-doping of nitrogen and sulfur. J. Nanopart. Res. 2017, 19, 9.
[11] Luo, Y.; Xu, Y. J.; Li, M.; Sun, L.; Hu, G. H.; Tang, T.; Wen, J. F.; Li, X. Y., Tuning the Photoluminescence of Graphene Quantum Dots by Fluorination. J. Nanomater. 2017, 9682846.
[12] Li, X. Y.; Tang, T.; Li, M.; He, X. C., Nitrogen-doped graphene films from simple photochemical doping for n-type field-effect transistors. Appl. Phys. Lett. 2015, 106, 5.
[13] He, X. C.; Tang, T.; Liu, F. C.; Tang, N. J.; Li, X. Y.; Du, Y. W., Photochemical doping of graphene oxide thin film with nitrogen for photoconductivity enhancement. Carbon 2015, 94, 1037-1043.
[14] Tang, T.; Tang, N. J.; Zheng, Y. P.; Wan, X. G.; Liu, Y.; Liu, F. C.; Xu, Q. H.; Du, Y. W., Robust magnetic moments on the basal plane of the graphene sheet effectively induced by OH groups. Sci. Rep. 2015, 5, 8448.
[15] Tang, T.; Liu, F. C.; Liu, Y.; Li, X. Y.; Xu, Q. H.; Feng, Q.; Tang, N. J.; Du, Y. W., Identifying the magnetic properties of graphene oxide. Appl. Phys. Lett. 2014, 104, 123104.
[16] Liu, F. C.; Tang, T.; Feng, Q.; Li, M.; Liu, Y.; Tang, N. J.; Zhong, W.; Du, Y. W., Tuning photoluminescence of reduced graphene oxide quantum dots from blue to purple. J. Appl. Phys. 2014, 115, 164307.
[17] Liu, F. C.; Tang, N. J.; Tang, T.; Liu, Y.; Feng, Q.; Zhong, W.; Du, Y. W., Photochemical doping of graphene oxide with nitrogen for photoluminescence enhancement. Appl. Phys. Lett. 2013, 103, 123108.
[18] 唐濤;李明;李新宇;文劍鋒,一種水溶性石墨烯的制備方法(ZL201710844158.0,已授權),發明專利,中華人民共和國國家産權局,2017.
[19] 唐濤;湯怒江;都有為,一種具有高濃度耦合磁矩的大片狀石墨烯的制備方法(CN201410712252.7,已授權),發明專利,中華人民共和國國家産權局,2014.
[20] 唐濤;文劍鋒,一種超高氮摻雜的石墨烯的制備方法(CN201310198188.0,已授權),發明專利,中華人民共和國國家産權局,2013.
[21] 唐濤;李明,高氮摻雜的石墨烯輕質鐵磁性材料的制備方法(CN201310198189.5,已授權),發明專利,中華人民共和國國家産權局,2013.
4、 研究項目
[1] 新型有機鉛鹵化物鈣钛礦的制備及其光學性能研究(2018GXNSFAA050014),12萬元,主持,廣西自然科學基金面上項目,2019.03-2022.02.
[2] 利用氟輔助調控石墨烯氮摻雜及其磁性(GLUTQD2002023),6萬元,主持,9728太阳集团首页科研啟動項目,2018.09—2021.04.
[3] 石墨烯基面上sp3疇分布的調控與磁性研究(11604061),23萬元,主持,國家自然科學青年基金,2017.01—2019.12.
[4] 氮摻雜的羟基化石墨烯的制備及其磁耦合研究(2015GXNSFBA139002),5萬元,主持,廣西自然科學基金,2015.09—2018.08.