代表论著 |
近5年来代表作: 1. M. M. Zhu, Y. X. Pan*, X. A. Chen, H. Z. Lian, J. Lin*, Designed synthesis, morphology evolution and enhanced photoluminescence of a highly efficient red dodec-fluoride phosphor, Li3Na3Ga2F12:Mn4+, for warm WLEDs, J. Mater. Chem. C, 2018, 6, 491-499 2. L. Q. Xi, Y. X. Pan*, M. M. Zhu, H. Z. Lian, J. Lin*, Abnormal site occupancy and high performance in warm WLEDs of a novel red phosphor NaHF2:Mn4 synthesized at room temperature, Dalton Trans., 2017, 46, 13835-13844. 3. M. M. Zhu, Y. X. Pan*, L. Q. Xi, H. Z. Lian, J. Lin*, Design, preparation, and optimized luminescence of a dodec-fluoride phosphor Li3Na3Al2F12:Mn4+ for warm WLEDs application, J. Mater. Chem. C, 2017, 5, 10241-10250. 4. L. Q. Xi, Y. X. Pan*, M. M. Zhu, H. Z. Lian, J. Lin*, Room-temperature synthesis and optimized photoluminescence of a novel red phosphor NaKSnF6:Mn4+ for application in warm WLEDs, J. Mater. Chem. C, 2017, 5, 9255-9263. 5. L. Li, Y. X. Pan*, Y. Huang, S. M. Huang. M. M. Wu*, Dual-emissions with energy transfer from the phosphor Ca14Al10Zn6O35:Bi3+,Eu3+ for application in agricultural lighting, J. Alloy. Comp., 2017, 724, 735-743. 6. L. Li, Y. X. Pan*, Z. Chen, S. M. Huang. M. M. Wu*, Tunable luminescence and energy transfer properties of Bi3+ and Mn4+ co-doped Ca14Al10Zn6O35 phosphors for agricultural applications, RSC Adv., 2017, 7, 14868-14875. 7. L. Q. Xi, Y. X. Pan*, X. Chen, S. M. Huang, M. M. Wu*, Optimized photoluminescence of red phosphor Na2SnF6:Mn4+ as red phosphor in the application in "warm" white LEDs, J. Am. Ceram. Soc. , 2017,100, 2005-2015. 8. L. Q. Xi, Y. X. Pan*, Tailored photoluminescence properties of a red phosphor BaSnF6:Mn4+ synthesized from Sn metal at room temperature and its formation mechanism, Mater. Res. Bull., 2017, 86, 57-62. 9. J. H. Hu, T. M. Yang, J. Lu, J. G. Wang, Y. X. Pan*, Improved luminescence of red phosphor CaAl12O19:Mn4+ by modification of synthesis process, Sci. Adv. Mater., 2017, 9, 480-484. 10. Z. Chen, Y. X. Pan*, L. Q. Xi, R. Pang, S. M. Huang, G. K. Liu*, Tunable yellow-red photoluminescence and persistent afterglow in phosphors Ca4LaO(BO3)3:Eu3+ and Ca4EuO(BO3)3, Inorg. Chem., 2016, 55, 11249-11257. 11. L. Q. Xi, Y. X. Pan*, S. M. Huang, G. K. Liu*, Mn4+ doped (NH4)2TiF6 and (NH4)2SiF6 microcrystal phosphors: synthesis through ion exchange at room temperature and their photoluminescence properties, RSC Adv., 2016, 6, 76251-76258. 12. Z. Chen, X. A. Chen, S. M. Huang, Y. X. Pan*, A novel tunable green-to-red emitting phosphor Ca4LaO(BO3)3:Tb,Eu via energy transfer with high quantum yield, Ceram. Int., 2016, 42 (12), 13476-13484. 13. Y. X. Pan*, L. Li, J. Lu, R. Pang, L. Wan, S. M. Huang, Enhanced photoluminescence and phosphorescence properties of green phosphor Zn2GeO4:Mn2+ via composition modification with GeO2 and MgF2, Dalton Trans., 2016, 45(23),9506-9512 14. Y. X. Pan*, Z. Chen, X. Y. Jiang,, S. M. Huang, M. M. Wu*, A facile route to BaSiF6:Mn4+ phosphor with intense red emission and its humidity stability, J. Am. Ceram. Soc., 2016, 99(9), 3008-3014. 15. L. F. Lv, Z. Chen, G. K. Liu*, S. M. Huang, Y. X. Pan*, Optimized photoluminescence of red phosphor K2TiF6:Mn4+ synthesized at room temperature and its formation mechanism, J. Mater. Chem. C, 2015, 3, 1935-1941. 16 X. Y. Jiang, Z. Chen, S. M. Huang*, J. G. Wang, Y. X. Pan*, Red phosphor BaTiF6:Mn4+: etching reaction mechanism, microstructures, optical properties, and application for white LEDs”, Dalton Trans. 2014, 43, 9414-9418. 17 L. F. Lv, X. Y. Jiang, S. M. Huang*, X. A. Chen, Y. X. Pan*, The formation mechanism, improved photoluminescence and LEDs application of red phosphor K2SiF6:Mn4+, J. Mater. Chem. C 2014, 2, 3879-3884. 18. L. F. Lv, X. Y. Jiang, Y. X. Pan*, G. K. Liu, S. M. Huang*, Luminescence properties and thermal stability of a red phosphor ZnSiF6.6H2O:Mn4+ synthesized by one-step hydrothermal method, J. Lumin. 2014, 152, 214 -217. 19. X. Y. Jiang, Y. X. Pan*, S. M. Huang, X. A. Chen, J. G. Wang, G. K. Liu, Hydrothermal synthesis and photoluminescence properties of red phosphor BaSiF6:Mn4+ for LED applications, J. Mater. Chem. C. 2014, 2 (13), 2301-2306. 20. X. Y. Bao, S. P. Zhou, J. G. Wang, L. J. Zhang, S. M. Huang, Y. X. Pan*, Color tunable phosphor CaMoO4:Eu3+,Li+ via energy transfer of MoO42--Eu3+ dependent on morphology and doping concentration, Mater. Res. Bull. 2013, 48, 1034-1039. 21. Z. Y. Zhang, J. G. Wang, Y. L. Yin, J. J. Zhou, S. P. Zhou, Y. X. Pan*, A novel green-to-yellow emitting phosphor: BaSi2SN2.67:Eu2+ for potential application in UV-LED, Opt. Mater. 2013, 35,1273-1275. 22. J. Lu, Y. X. Pan*, J. G. Wang , X. A. Chen, S. M. Huang, G. K. Liu, Reduction of Mn4+ to Mn2+ in CaAl12O19 by co-doping charge compensators to obtain tunable photoluminescence, RSC Adv. 2013, 3 (14), 4510 - 4513. |