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School of Physics
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Teachers

LIU Wen     KANG Xiaoshen     WANG Junping     ZHANG Chengyuan    
ZHU Liyuan     LI Lili     XIAO Yonghui     SHI Wei    
KANG Dawei     FU Qiang     SU Yu     ZHANG Dan    
LU Guoying     LI Bin     CHEN Yuyan     LIU Yufen    
XU Xiaojuan     XU Guangwen     ZHANG Junsong     YIN Feifei    
XU Chao     JIANG Qiuli     LU Xuemei     XU Guangzhi    
LI Yijie     LIU Chang     PAN Xueling     CAO Shuo    
SONG Yan     SONG Xiangyun     ZHANG Meixia     SUN Jiaxing    
SHAN Jing     FAN Xiaoxing     TAN Tianya     ZHAO Hongliang    
CHEN Xihao     LIU Shixing     SONG Peng     MENG Shaoying    
YU Hanjiang     WANG Jiwei     LI Lina     QIU wei    
LV Pin     CHEN Yuening     LI Yongqing     LIU Xinghui    
LIANG Yaqiu     HAN Yu     DING Yong     LIU Kuiyong    
LIU Yanxia     WU Xinjie     MA Fengcai    


FAN Xiaoxing
2020-07-08 20:49  

FAN Xiaoxing, Professor at School of Physics, Liaoning University, received hisB.S. degrees in Physics in 2003 from Liaoning University. He obtained a Ph.D. in Materials Science from Nanjing University, China in 2008,and completed the postdoctoral research in 2012 in Nanjing University. In April 2009, He joined the School of Physics of Liaoning University and has been working till now.

The research interests include synthesizing nanomaterials, photocatalysis, photoelectrochemistry, Laser fabrication and appliance. The main research achievements are as follows,

1. Cheng, X.;  Li, L.;  Jia, L.;  Cai, H.;  Wang, X.;  Ding, Y.; Fan, X., Preparation of K+ doped ZnO nanorods with enhanced photocatalytic performance under visible light. Journal of Physics D: Applied Physics 2020, 53 (3).

2. Liu, J.;  Han, D.;  Wang, X.;  Cai, H.;  Jia, L.;  Wang, J.;  Shi, H.;  Guo, Q.; Fan, X., The photoelectrochemical properties of Sn2Nb2O7 photoanode. Journal of Alloys and Compounds 2019, 773, 1033-1039.

3. Li, Y.;  Zhao, Y.;  Yang, Y.;  Shi, W.; Fan, X., Revelation solvent effects: excited state hydrogen bond and proton transfer of 2-(benzo[d]thiazol-2-yl)-3-methoxynaphthalen-1-ol. Organic Chemistry Frontiers 2019, 6 (15), 2780-2787.

4. Jia, L.;  Cheng, X.;  Wang, X.;  Cai, H.;  He, P.;  Ma, J.;  Li, L.;  Ding, Y.; Fan, X., Large-Scale Preparation of g-C3N4 Porous Nanotubes with Enhanced Photocatalytic Activity by Using Salicylic Acid and Melamine. Industrial & Engineering Chemistry Research 2019, 59 (3), 1065-1072.

5. Han, D.;  Liu, J.;  Cai, H.;  Zhou, X.;  Kong, L.;  Wang, J.;  Shi, H.;  Guo, Q.; Fan, X., High-yield and low-cost method to synthesize large-area porous g-C3N4 nanosheets with improved photocatalytic activity for gaseous nitric oxide and 2-propanol photodegradation. Applied Surface Science 2019, 464, 577-585.

6. Tian, L.;  Kong, L.;  Ma, J.;  Liu, J.;  Wang, J.;  Wang, H.;  Han, D.;  Han, Y.; Fan, X., Photoelectrochemical Properties of Pb3Nb4O13as a New Photoanode Material. Journal of The Electrochemical Society 2017, 164 (14), H1047-H1052.

7. Ma, J.;  Tian, L.;  Xu, C.;  Zhang, Y.;  Zhang, T.;  Li, H.;  Zhao, P.;  Liang, Y.;  Wang, J.; Fan, X., Hydrothermal Synthesis and Visible Light Photocatalytic Properties of Bi2O2CO3/Bi2WO6 Composite. Catalysis Letters 2017, 148 (1), 41-50.

8. Han, X.;  Tian, L.;  Jiang, H.;  Kong, L.;  Lv, J.;  Shan, J.;  Wang, J.; Fan, X., Facile transformation of low cost melamine–oxalic acid into porous graphitic carbon nitride nanosheets with high visible-light photocatalytic performance. RSC Advances 2017, 7 (24), 14372-14381.

9. Han, X.;  Lü, J.;  Tian, L.;  Kong, L.;  Lu, X.;  Mei, Y.;  Wang, J.; Fan, X., Ag-loaded mesoporous Pb3Nb2O8 photocatalysts with enhanced activity under visible-light irradiation. Chinese Journal of Catalysis 2017, 38 (1), 83-91.

10. Han, X.;  Wang, Y.;  Lv, J.;  Kong, L.;  Tian, L.;  Lu, X.;  Wang, J.; Fan, X., An artful and simple synthetic strategy for fabricating low carbon residual porous g-C3N4 with enhanced visible-light photocatalytic properties. RSC Advances 2016, 6 (87), 83730-83737.

11. Fan, X., et al., Effect of crystal growth on mesoporous Pb3Nb4O13 formation, and their photocatalytic activity under visible-light irradiation. Journal of Materials Chemistry, 2010. 20(14): p. 2865.

12. Fan, X., et al., Role of phosphorus in synthesis of phosphated mesoporous TiO2 photocatalytic materials by EISA method. Applied Surface Science, 2008. 254(16): p. 5191-5198.

13. Fan, X., et al., Facile Method To Synthesize Mesoporous Multimetal Oxides (ATiO3, A = Sr, Ba) with Large Specific Surface Areas and Crystalline Pore walls. Chemistry of Materials, 2010. 22(4): p. 1276-1278.

14. Fan, X.-x., et al., Photocatalytic Degradation of Acetaldehyde on Mesoporous TiO2: Effects of Surface Area and Crystallinity on the Photocatalytic Activity. Chinese Journal of Chemical Physics, 2007. 20(6): p. 733-738.

15. Fan, X., et al., The structural, physical and photocatalytic properties of the mesoporous Cr-doped TiO2. Journal of Molecular Catalysis A: Chemical, 2008. 284(1-2): p. 155-160.

 

Email: xxfan@lnu.edu.cn

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