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  Dr. MINGLEI ZHAO  
 
Address 1 :
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Title : Dr.
First Name : MINGLEI
Last Name : ZHAO
University/Institution : New York University
Phone # : 1-6468524511
Email ID : mz70@nyu.edu
City : New York
Country : United States
State : New york
Zipcode : 10010
Department : College of Dentistry, Department of Biomaterials
Company Name :
Area of Research
Materials Physics and Chemistry
Area of Expertise
Dental Ceramics; Syntheis and Structural Control of Nanomaterials
Brief Description of Research Interest :
My current research mainly focuses on the improvement of resistance to low-temperature degradation and translucent properties of monolithic zirconia crowns. The major goal aims to further develop the zirconia-glass graded structures for next-generation all-ceramic dental restorations with improved resistance to chipping, delamination and flexural fracture, as well as improved cementation properties and aesthetics.

In my Ph.D Study, I have a keen interest in the syntheses and the structural control of nanostructured materials for realization of these materials in a wide range of interesting and important fields such as fluorescence and phosphorescence, electrical properties, and photocatalysis.


Representative Publications :

1.     M. Zhao, G. Li, J. Zheng, L. Li, H. Wang,and L. Yang, Preparation and polymorph-sensitive luminescence properties of BiPO4:Eu, Part I: room-temperature reaction followed by a heattreatment. CrystEngComm, 2011, 13 (20): 6251-6257. 

2.     M.Zhao, G.Li, J. Zheng, L. Li, and L. Yang, Fabrication of assembled-spheres YVO4:(Ln3+,Bi3+) towards optically tunable emission. CrystEngComm, 2012, 14(6): 2062-2070. 

3.     H. Lin, L. Li, M.Zhao, X. Huang, X. Chen, G. Li, and R. Yu, Synthesis of High-Quality Brookite TiO2 Single-Crystalline Nanosheets with Specific Facets Exposed: Tuning Catalysts from Inert to Highly Reactive. J. Am. Chem. Soc., 2012,134 (20): 8328-8331. 

4.     C. Fu, G. Li, M.Zhao, L. Yang, J. Zheng, and L. Li, Solvent-Driven Room-Temperature Synthesis of Nanoparticles BiPO4:Eu3+. Inorg.Chem., 2012, 51 (10): 5869-5880. 

5.      H.Wang, G. Li, M. Zhao, and L.Li, Spin state transition and giant dielectric constant in Pr0.987Na0.013CoO3.Appl. Phys. Lett., 2012, 100 (15): 152109. 

6.     M.Zhao, G.Li, L. Li, L. Yang, and J. Zheng, Structures and Polymorph-Sensitive Luminescence Properties of BiPO4/Eu Grown in HydrothermalConditions. Crystal Growth  Des., 2012, 12 (8): 3983-3991.

7.     M. Zhao, G. Li, L. Yang, and L.Li, Nanophosphors Eu3+-doped BiPO4: Room temperaturesynthesis and optimum luminescence properties, Nanosci. Nanotechnol. Lett., 2013,5(2): 143-146. 

8.     M. Zhao, L. Li, L. Yang, J.Zheng, and G. Li, Exploring the unique electrical properties of metastable BiPOthrough switchable phase transitions. CrystEngComm,2013, 15(3): 609-615. 

9.     M. Zhao, L. Li, L. Yang, J.Zheng, and G. Li, Is BiPO4 a Better Luminescent Host? A Case Studyon Doping and Annealing Effects. Inorg.Chem., 2013, 52(2): 807-815. 

10.     M. Zhao, L. Li, H. Lin, L. Yang,G. Li, A facile strategy to large-scale uniform brookite TiOnanospindles with high thermal stability and superior electrical properties. Chem. Commun., 2013, 49, 7046-7048.

11.    Y. Zheng, M. Zhao, L. Li, G. Li, X. Zhang, Preparation, phase structure control, and luminescent properties of Bi1-xEuxPO4nanophosphors. Chem. J. Chinese Universities, 2014, 35(5):921-927.

12.    Y. Zheng, L. Li, M. Zhao, J. Zheng, G. Li, E.Yang, X. Zhang, Enhancement of thermal stability in bismuth phosphate by Ln3+doping for tailored luminescence property. CrystEngComm,2014, 16: 5040-5049.



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