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Teacher

Faculty&Staff

He Fang

2018年06月07日 10:54  点击:[]

                                   

He Fang Associate professor

Phone: 022-27403045

Email:  fanghe@tju.edu.cn

Department: Advanced Metallic Materials Institute

Research direction

High performance composites, biocomposite and Photoelectric material


Education

2003.9-2006.3 Tianjin Univeristy, Materials Science, Ph.D;
2001.9-2003.7 Tianjin Univeristy, Materials Science, Master;
1997.9-2001.7 Tianjin Univeristy, Materials Science, Bachelor


Employment history

Teaching and research work in Tianjin university from March 2006.


Areas of research interest

(1) High performance structural and functional composites;
(2) Composites structure design, fabrication, microstructure and properties;
(3) Nanostructures synthesis for photocatalytic application


Teaching

Solid phase transformation, Composite science and Development of materials


Honors and awards

Second Class Award of Tianjin City Natural Science (2006)


Research projects

(1)Design of upconversion luminescence enhanced 3C-Sic nano-composite structure and water splitting research, NSFC, 2014-2017

(2)Nano-composite structure and formation mechanism of MoS2/metal-organic framework materials (MOFs)/g-C3N4 and their photocatalytic performance,NSFC, 2016-2019

(3)Preparation and composite sensitization mechanism of (Ge+Si)/TiO2 quantumdot hybrid composites, NSFC, 2009-2011

(4)Study on key technology of surface antibacterial and activation of three-dimensional braided composites, Tianjin city natural science funds, 2007-2010

(5)Preparation of multi-scale TiO2 nano-tube/pore gradient structure on surface of TLM titanium alloy coronary stenting, Tianjin city natural science funds, (2011-2014)


Selected publications (Journal articles, patents and books)

[1]Three-dimensional cuprous oxide microtube lattices with high catalytic activity templated by bacterial cellulose nanofibers. Journal of materials chemistry,2011,21(29):10637-10640.(IF:6.626)

[2] Yolk-Shell Structured Fe3O4@C@F-TiO2 Microspheres with Surface Fluorinated as Recyclable Visible-Light Driven Photocatalysts. Applied Catalysis B: Environmental,2014,150-151:515-522.(IF:6.007)

[3]Au@Cu7S4 yolk-shell nanoparticles as a 980 nm laser-driven photothermal agent with a heat conversion efficiency of 63%. RSC Advances.2015,5:87903-87907.(IF:3.840)

[4]Fabrication and electromagnetic properties of novel FeNi alloy-coated flake graphite prepared by electroless plating. Journal of Alloys and Compounds.2016,656:51-57.(IF:2.999)

[5] Controlled delivery of Dexamethasone from TiO2 film with nanoporous structure on Ti-25Nb-3Mo-2Sn-3Zr biomedical alloy without polymeric carrier. Materials Letters.2014,128(8):384-387.(IF:2.269)

[6] Fabrication of Ge quantum dots doped TiO2 films with high optical absorption properties via layer-by-layer ion-beam sputtering. Materials Letters.2012;67(1):369-372.(IF:2.269)

[7] Fabrication and electromagnetic properties of novel FeNi alloy-coated flake graphite prepared by electroless plating. Journal of Alloys and Compounds.2016,656:51-57.(IF:2.999)

[8] Effect of coupling treatment on mechanical properties of bacterial cellulose nanofibre-reinforced UPR ecocomposites. Materials letters,2009,63(22):1952-1954.(IF:2.269)

[9] Composite electroplating of Cu-SiO2 nano particles on carbon fiber reinforced epoxy composites. Applied surface science, 2009,256(5):1614-1616.(IF:2.538)

[10] Graphene oxide-assisted synthesis of micro-sized ultrathin single-crystalline anatase TiO2 nanosheets with excellent electron transport and diffusion properties.ACS Applied Materials & Interfaces.2016,8 4):2495-2504.(IF:6.723)

[11]TiO2 with oxygen vacancies wrapped by graphite-like carbon as enhanced visible-light driven photocatalyst. RSC Advances. 2016,6:10887-10894.(IF:3.84)

[12]Novel hexagonal-YFeO3/a-Fe2O3 heterojunction composite nanowires with enhanced visible light photocatalytic activity. Materials letters.2015,165:263-266.(IF:2.489)



Social Appointments

Member of Council, Chinese Society for Composites Materials

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