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TRAN VAN THUAN, M.S

TRAN VAN THUAN, M.S


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Researcher, Chemical and Material Engineering Laboratory,
NTT Institute of Hi-Technology,
Nguyen Tat Thanh University
Phone: (+84) 989 267 354 | Skype: tranuv |
Email: tranvt@outlook.com 

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TRAN VAN THUAN, M.S

Researcher, Chemical and Material Engineering Laboratory,
NTT Institute of Hi-Technology,
Nguyen Tat Thanh University
Phone: (+84) 989 267 354 | Skype: tranuv |
Email: tranvt@outlook.com 

RESEARCH FOCUS

C-H/N-H activation
Heterogeneous catalysis
Metal organic frameworks (MOFs)
Organic synthesis
Adsorption

EDUCATION

M.S, Chemical Engineering, University of Technology, VNU – HCM, 2015
B.A. Chemistry Teacher Education, Department of Chemistry, University of Dalat, 2012

 

PUBLICATIONS

  1. LG Bach, TV Tran, TD Nguyen, T Van Pham, ST Do, Enhanced adsorption of methylene blue onto graphene oxide-doped XFe2O4 (X= Co, Mn, Ni) nanocomposites: kinetic, isothermal, thermodynamic and recyclability studies, Research on Chemical Intermediates 44 (2018), 1661–1687
  2. LG Bach, DVN Vo, ND Trinh, VTT Ho, TV Tran, Removal of Cu2+ from Aqueous Water by Adsorption onto the Efficient and Recyclable Durian Shell-Derived Activated Carbon, Applied Mechanics and Materials 876 (2018), 46-51
  3. HV Nguyen, TV Thuan, ST Do, DT Nguyen, DVN Vo, LG Bach, High Photocatalytic Activity of Oliver-Like BiVOfor Rhodamine B Degradation under Visible Light Irradiation, Applied Mechanics and Materials 876 (2018), 52-56
  4. TV Tran, HTN Le, HQ Ha, XNT Duong, LTH Nguyen, TLH Doan, HL Nguyen, T Truong, A five coordination Cu(II) cluster-based MOF and its application in the synthesis of pharmaceuticals via sp3 C–H/N–H oxidative coupling, Catalysis Science & Technology 7 (2017), 3453-3458
  5. TV Tran, TD Nguyen, VTT Ho, QTP Bui, LG Bach, Efficient removal of Ni2+ ions from aqueous solution using activated carbons fabricated from rice straw and tea waste, Journal of Materials and Environmental Science 8 (2) (2017), 426-437
  6. TV Tran, QTP Bui, TD Nguyen, NTH Le, LG Bach, Application of response surface methodology to optimize the fabrication of ZnCl2-activated carbon from sugarcane bagasse for the removal of Cu2+Water Science and Technology 75 (9) (2017), 2047-2055
  7. TV Tran, QTP Bui, TD Nguyen, NTH Le, LG Bach, A comparative study on the removal efficiency of metal ions (Cu2+, Ni2+, and Pb2+) using sugarcane bagasse-derived ZnCl2-activated carbon by the response surface methodology, Adsorption Science & Technology 35 (1-2) (2017), 72-85
  8. TV Tran, QTP Bui, TD Nguyen, VTT Ho, LG Bach, Response surface methodology approach for optimization of Cu2+, Ni2+ and Pb2+ adsorption using KOH–activated carbon from banana peel, Surfaces and Interfaces 6 (2017), 209–217
  9. TV Tran, TV Pham, QTP Bui, TD Nguyen, LG Bach, Optimization of congo red removal by adsorption onto NiFe2O4/GO nanocomposite, Vietnam Journal of Science, Technology and Engineering, 59(3) (2017), 3-6
  10. TV Tran, TV Pham, TD Nguyen, LG Bach, Preparation of graphene oxide-XFe2o4 (X = Co, Mn, Ni) nanocomposites and their application in adsorption organic dye from aqueous solution, Journal of Materials Science & Surface Engineering, 5(5) (2017) 619-621
  11. LG Bach, TD Nguyen, TV Tran, TV Pham, Optimization of the fabrication of banana peel-derived activated carbon and application for Cu2+Removal, Journal of Materials Science & Surface Engineering, 5(5) (2017) 622-626
  12. HTN Le, TV Tran, NTS Phan, T Truong, Efficient and recyclable Cu2(BDC)2(BPY)-catalyzed oxidative amidation of terminal alkynes: Role of bipyridine ligand, Catalysis Science & Technology 5 (2) (2015), 851-859

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