[1] Z. Deng, Y. Dai, W. Chen, X.M. Pei, J.H. Liao, Synthesis and Characterization of Bowl-Like Single-Crystalline BaTiO(3) Nanoparticles, Nanoscale Research Letters, 5 (2010) 1217-1221.
[2] Z. Deng, Y. Dai, W. Chen, X. Pei, Synthesis and Characterization of Single-Crystalline BaTi2O5 Nanowires, J. Phys. Chem. C, 114 (2010) 1748-1751
[3] Z. Deng, Y. Dai, H. Liu, W. Chen, Large scale synthesis of BaTiO3 nanorods by a template way, Advanced Materials Research, 79-82 (2009) 373-376.
[4] Z. Deng, Y. Dai, W. Chen, Controlled synthesize of BaTiO3 nanoparticles and BaCO3 nanowires through the reverse micelle system, Advanced Materials Research, 66 (2009) 171-174.
[5] T. Jia, J. Zhao, F. Fu, Z. Deng, W. Wang, Z. Fu, F. Meng, Synthesis, Characterization, and Photocatalytic Activity of Zn-Doped SnO 2/Zn 2 SnO 4 Coupled Nanocomposites, International Journal of Photoenergy, 2014 (2014) doi:10.1155/2014/197824.
[6] M. Wu, J. Jin, J. Liu, Z. Deng, Y. Li, O. Deparis, B.-L. Su, High photocatalytic activity enhancement of titania inverse opal films by slow photon effect induced strong light absorption, Journal of Materials Chemistry A, 1 (2013) 15491-15500.
[7] L.-H. Chen, X.-Y. Li, Z. Deng, Z.-Y. Hu, J.C. Rooke, A. Krief, X.-Y. Yang, B.-L. Su, Hydrothermal and surfactant treatment to enhance the photocatalytic activity of hierarchically meso–macroporous titanias, Catal. Today, 212 (2013) 89-97.
[8] J. Liu, J. Jin, Z. Deng, S.-Z. Huang, Z.-Y. Hu, L. Wang, C. Wang, L.-H. Chen, Y. Li, G. Van Tendeloo, B.-L. Su, Tailoring CuO nanostructures for enhanced photocatalytic property, J. Colloid Interface Sci., 384 (2012) 1-9.
[9] X.-Y. Li, L.-H. Chen, Y. Li, J.C. Rooke, Z. Deng, Z.-Y. Hu, J. Liu, A. Krief, X.-Y. Yang, B.-L. Su, Tuning the structure of a hierarchically porous ZrO2 for dye molecule depollution, Microporous Mesoporous Mater., 152 (2012) 110-121.
[10] M. Wu, Y. Li, Z. Deng, B.L. Su, Three-Dimensionally Ordered Macroporous Titania with Structural and Photonic Effects for Enhanced Photocatalytic Efficiency, Chemsuschem, 4 (2011) 1481-1488.
1.Name: Deng Zhao
2.Brief introduction:
1)Date of birth: 1982.7.20
2)Degree: Doctor
3)Title: Experimentalist
4)Working department: State Key Laboratory of Advanced Technology for Materials Synthesis and Processing
3.Education experience(after entering university):
Sept. 2010-July 2005 Dept. of Materials Science & Engineering, Wuhan University of Technology, Bachelor in Materials Science and Engineering
Sept. 2005-July 2010 Dept. of Materials Science & Engineering, Wuhan University of Technology, Doctor in Materials Physics and Chemistry
4.Working experience:
2010-present State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology
Apr.2011-Sept.2011 University of Namur, Belgium, visiting scholar
5.Research field(no more than 3):
Synthesis of functional nanomaterials and their applications in catalysis, environmental protection and other fields
Nano energy storage materials and devices
6.Research project(no more than 5):
1)Fundamental Research Funds for the Central Universities (WUT: 2014- IV-132). PI
2)Changjiang Scholars and Innovative Research Team (IRT1169) of Chinese Ministry of Education. CO-PI
3)National Natural Science Foundation of China for Young Scholars (21301133), CO-PI
4)National Natural Science Foundation of China for Young Scholars (51302204), CO-PI
5)National Natural Science Foundation of China for Young Scholars (51101115), CO-PI
7.Representative papers and works(no more than 10):
[1] Z. Deng, Y. Dai, W. Chen, X.M. Pei, J.H. Liao, Synthesis and Characterization of Bowl-Like Single-Crystalline BaTiO(3) Nanoparticles, Nanoscale Research Letters, 5 (2010) 1217-1221.
[2] Z. Deng, Y. Dai, W. Chen, X. Pei, Synthesis and Characterization of Single-Crystalline BaTi2O5 Nanowires, J. Phys. Chem. C, 114 (2010) 1748-1751
[3] Z. Deng, Y. Dai, H. Liu, W. Chen, Large scale synthesis of BaTiO3 nanorods by a template way, Advanced Materials Research, 79-82 (2009) 373-376.
[4] Z. Deng, Y. Dai, W. Chen, Controlled synthesize of BaTiO3 nanoparticles and BaCO3 nanowires through the reverse micelle system, Advanced Materials Research, 66 (2009) 171-174.
[5] T. Jia, J. Zhao, F. Fu, Z. Deng, W. Wang, Z. Fu, F. Meng, Synthesis, Characterization, and Photocatalytic Activity of Zn-Doped SnO 2/Zn 2 SnO 4 Coupled Nanocomposites, International Journal of Photoenergy, 2014 (2014) doi:10.1155/2014/197824.
[6] M. Wu, J. Jin, J. Liu, Z. Deng, Y. Li, O. Deparis, B.-L. Su, High photocatalytic activity enhancement of titania inverse opal films by slow photon effect induced strong light absorption, Journal of Materials Chemistry A, 1 (2013) 15491-15500.
[7] L.-H. Chen, X.-Y. Li, Z. Deng, Z.-Y. Hu, J.C. Rooke, A. Krief, X.-Y. Yang, B.-L. Su, Hydrothermal and surfactant treatment to enhance the photocatalytic activity of hierarchically meso–macroporous titanias, Catal. Today, 212 (2013) 89-97.
[8] J. Liu, J. Jin, Z. Deng, S.-Z. Huang, Z.-Y. Hu, L. Wang, C. Wang, L.-H. Chen, Y. Li, G. Van Tendeloo, B.-L. Su, Tailoring CuO nanostructures for enhanced photocatalytic property, J. Colloid Interface Sci., 384 (2012) 1-9.
[9] X.-Y. Li, L.-H. Chen, Y. Li, J.C. Rooke, Z. Deng, Z.-Y. Hu, J. Liu, A. Krief, X.-Y. Yang, B.-L. Su, Tuning the structure of a hierarchically porous ZrO2 for dye molecule depollution, Microporous Mesoporous Mater., 152 (2012) 110-121.
[10] M. Wu, Y. Li, Z. Deng, B.L. Su, Three-Dimensionally Ordered Macroporous Titania with Structural and Photonic Effects for Enhanced Photocatalytic Efficiency, Chemsuschem, 4 (2011) 1481-1488.
8.Contact information:
1) Tel: 13035133676
2) E-mail: dengzhao@whut.edu.cn
3) Location of lab: State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, DongPin(I) building