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Jiangsu University
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Outstanding Talents
​QIAO Fen
Date:2020-09-26   View:

QIAO Fen, Professor
Email: fqiao@ujs.edu.cn

Fields of Research:
1)Controlled growth and principle of nanostructures;
2)Self-assembly and film preparation of nanostructures;
3)Construction of nanostructured optoelectronic devices.

Granted Projects:
National Natural Science Foundation of China, 2020-2023 and seven completed projects of China and Jiangsu Province.

Selected Publications:
[1]Construction of microsphere-shaped ZnSe-AgZnInS and its charge transport property. Journal of Materials Research and Technology, 2019.
[2]Strategies for enhancing conductivity of colloidal nanocrystals and their photoelectronic applications. Journal of Energy Chemistry, 2019.
[3]Influence of cleaning treatment on structure, optical and electrical properties of Ag/ZnSe microspheres prepared by silver mirror reaction. Vacuum, 2020.
[4]Tunability in the optical and electronic properties of ZnSe microspheres via Ag and Mn doping. ACS omega, 2019.
[5]Hexamethyldisilazane-triggered room temperature synthesis of hydrophobic perovskite nanocrystals with enhanced stability for light-emitting diodes. Journal of colloid and interface science, 2019.
[6]A facile approach of fabricating various ZnO microstructures via electrochemical deposition, Journal of Electronic Materials, 2019.
[7] Tunable Formation of ZnSe to ZnO due to a Controlled Phase Transition Driven by Hydrazine and Sodium Hydroxide, ES. Energy Environment,2018.
[8] Efficient ice-bath texturing route for multi-crystalline silicon solar cell application, Silicon, 2018.
[9]Controlling the morphology of ZnO structures via low temperature hydrothermal method and their optoelectronic application, Materials Science in Semiconductor Processing, 2018.
[10]Functionalized self-assembly of colloidal CdX (X=S, Se) nanorods on solid substrates for device applications, Nanoscale, 2017.
[11]Fabrication of 3D graphene/CdTe quantum dots composite through electrophoretic deposition and its electrical properties. Journal of Materials Science: Materials in Electronics, 2017.
[12]Effect of Cd-phosphonate complex on the self-assembly structure of colloidal nanorods, Materials Letters, 2016.
[13]Semiconductor Nanocrystals for Photovoltaic Devices, Materials Science Forum, 2016.
[14]Self-Assembly of Colloidal Nanorods Arrays,International Journal of Nanoscience, 2015.
[15]Self-assembly of Parallel Aligned Nanorods Monolayer via Thermal Annealing Technique, Materials Letters,2014.
[16]Enhanced photo-induced charge transfer properties of vertically aligned nanorods arrays fabricated by thermal annealing approach, Journal of Materials Science:Materials in Electronics,2014.
[17]Surface photovoltage properties of self-assembled CdSe quantum dots arrays fabricated by slow evaporation approach, Vacuum,2014.
[18]A Novel Method for Preparing Vertically Aligned CdS Nanorod Arrays and Its Application in Photovoltaic Cells with P3HT Fibers, Journal of Inorganic and Organometallic Polymers and Materials,2013.
[19]Enhanced transport properties of assembled CdSe quantum dot through slow evaporation with mixed solvents, Journal of Materials Science:Materials in Electronics,2013.
[20]Improved performance of photovoltaic devices based on poly (3-hexylthiophene) nanofibers and CdSe quantum dots through ligand exchange and annealing treatment, Solid-State Electronics, 2013.
[21]Photovoltaic characterization of poly(2,5-bis(3-dodecylthiophen-2-yl) -2’,2’’-biselenophene) for organic solar cells, Solar Energy Materials &Solar Cells,2010.
[22]Optical Properties of Polymer Composites and its Applications in photovoltaic Devices: A Review, Nova Science Publishers,2010.
[23]Ordered Two-Dimensional Superstructures of Colloidal Octapod-Shaped Nanocrystals on FlatSubstrates, Nano Letters,2012.
[24]Phase diagram of octapod-shaped nanocrystals in a quasi-two-dimensional planar geometry, The Journal of Chemical Physics,2013.
[25]Atomic-layer-deposited (ALD) Al2O3 passivation dependent interface chemistry, band alignment and electrical properties of HfYO/Si gate stacks, Journal of Materials Science & Technology, 2019.
[26]Room temperature synthesis of aqueous soluble covellite CuS nanocrystals with high photothermal conversion, CrystEngComm, 2018.
[27]Inter-diffusion of Cu2+ ions into CuS nanocrystals confines the microwave absorption properties, CrystEngComm, 2018.
[28]Optical and electrical properties of colloidal (spherical Au)-(spinel ferrite nanorod) heterostructures, Nanoscale, 2011.
[29]Transient photovoltage in poly(3-hexylthiophene)/n-crystalline silicon heterojunction,Vacuum,2013.

 
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