Thông tin nhân sự

Họ tên: TS. Vũ Thị Tần

Chức vụ: Giảng viên

Thuộc đơn vị: Khoa Kỹ thuật Hóa học

Địa chỉ email: tan.vuthi@hust.edu.vn

Nhóm chuyên môn: NCM CN Vô cơ và Dinh dưỡng cây trồng

Lý lịch khoa học

Quá trình đào tạo:
2014: Tiến sĩ, ngành Vật liệu Hoá học, University of Oviedo, Spain.
2011: Thạc sĩ Khoa học, ngành Vật liệu Hoá học, University of Oviedo, Spain.
2010: Chuyên gia, ngành Hoá học cơ bản, Tula State University, Russia.

Quá trình công tác:
Từ 12/2010 – 03/2015: Nghiên cứu viên tại Viện nghiên cứu các hợp chất carbon (INCAR-CSIC), Tỉnh Asturias, Spain.
Từ 03/2015– 07/2017: Làm việc tại trung tâm nghiên cứu công nghệ cao, tập đoàn thép quốc tế ArcelorMittal, Spain.
Từ 08/2017 đến nay: Giảng viên, Trường Hoá và Khoa học Sự sống, Đại học Bách Khoa Hà Nội.

Các hướng nghiên cứu chuyên sâu:
  • Nghiên cứu các nhóm vật liệu carbon tiên tiến : Graphene và các hợp chất composite dựa trên cơ sở Graphene;
  • Nghiên cứu chế tạo các hợp chất oxit kim loại kích thước nano có ứng dụng trong năng lượng, xử lý môi trường;
  • Nghiên cứu tinh chế Graphite và ứng dụng của Graphite trong công nghệ chế tạo điện cực.
  • Nghiên cứu màng phủ hệ vô cơ chậm cháy, cách nhiệt
  • Hoá mỹ phẩm xanh
Các môn giảng dạy:
  • Công nghệ soda và các chất kiềm;
  • Màng phủ vô cơ;
  • Động học và thiết bị phản ứng
  • Xử lý nước
  • Vật liệu vô cơ
  • Tách và làm sạch
  • Môn kỹ năng mềm: Đổi mới sáng tạo và khởi nghiệp
Các sách đã xuất bản:
  1. T. T. Vu , E.Yu. Chigrinova, O. N. Ponamoreva and V.A. Alferov
TITLE: Bioelectrocatalytic oxidation of Glucose by bacterial cells Pseudomonas Putida in the presence of the mediators
REF.: Chapter 10,  2011 Nova Science Publishers, Inc.
 
  1.  T. T. Vu , The Vinh La
TITLE: Supported-Metal Oxide Nanoparticles-Potential Photocatalysts
REF.: DOI: 10.5772/intechopen.93238. Chapter 10, 2020. INTECHOPEN

+ Bài báo ISI/Scopus:
  • G Marbán, T.T.Vu, T Valdés-Solís, A simple visible spectrum deconvolution technique to prevent the artefact induced by the hypsochromic shift from masking the concentration of methylene blue in photodegradation experiments, Applied Catalysis A: General, 402(1-2) (2011) 218-223.
https://www.sciencedirect.com/science/article/abs/pii/S0926860X11003449
 
  • T.T.Vu, L del Río, T Valdés-Solís, G Marbán, Tailoring the synthesis of stainless steel wire mesh-supported ZnO, Materials Research Bulletin, 47(6) (2012) 1577-1586.
https://www.sciencedirect.com/science/article/abs/pii/S0025540812000712
 
  • T.T.Vu, L del Río, T Valdés-Solís, G Marbán, Stainless steel wire mesh-supported ZnO for the catalytic photodegradation of methylene blue under ultraviolet irradiation, Journal of Hazardous Materials, 246-247 (2013) 126-134.
 
  • T.T.Vu, L del Río, T Valdés-Solís, G Marbán, Fabrication of wire mesh-supported ZnO photocatalysts protected against photocorrosion, Applied Catalysis B: Environmental, 140-141 (2013) 189-198.
https://www.sciencedirect.com/science/article/abs/pii/S0926337313002324
 
  • T.T.Vu, G Marbán, Sacrificial Template Synthesis of High Surface Area Metal Oxides. Example: An Excellent Structured Fenton-like Catalyst, Applied Catalysis B: Environmental, 152-153(2014) 51-58.
rea Metal Oxides. Example: An Excellent Structured Fenton-like Catalyst, Applied Catalysis B: Environment
https://www.sciencedirect.com/science/article/abs/pii/S092633731400037X
 
  • T. T. Vu, Ana B. Rodil, Gregorio Marbán, Teresa Valdés-Solís, Nanostructured SSWM-supported CdxZn1-xO: a stable photocatalyst under visible and ultraviolet irradiation, Journal of Environmental Chemical Engineering, 2 (2014) 1612-1620.
https://www.sciencedirect.com/science/article/abs/pii/S2213343714001341
 
  • T. T. Vu, Teresa Valdés-Solís, Gregorio Marbán, High surface area stainless steel wire mesh-supported TiO2 prepared by sacrificial template accelerated hydrolysis. A monolithic photocatalyst superior to P25 TiO2, Journal of Environmental Chemical Engineering, 2 (2014) 2229-2235.
https://www.sciencedirect.com/science/article/abs/pii/S2213343714002176
 
  • T. T. Vu, Teresa Valdés-Solís, Gregorio Marbán, Novel high surface area stainless steel wire mesh supported Ni0.7Zn0.3O solid solution prepared by room temperature sacrificial template accelerated hydrolysis. Application in the production of hydrogen from methanol. Applied Catalysis B: Environmental, 160-161 (2014) 57-66. 
https://www.sciencedirect.com/science/article/abs/pii/S0926337314002811
 
  • Marta Sevilla, Guillermo A. Ferrero, T. T. Vu and Antonio B. Fuertes , A simple approach towards highly dense solvated graphene films for supercapacitors . ChemNanoMat, 2 (2016) 33-36. 
https://aces.onlinelibrary.wiley.com/doi/abs/10.1002/cnma.201500204
 
  • La The Vinh, Huynh Thu Suong, Vu Minh Khoi, Trinh Van Huy, Vu T. Tan, Adsorption capacities of reduced graphene oxide using urea as a reductant, Vietnam Journal of Catalysis and Adsorption, 8 – issue 1 (2019) 14-18.
https://jca.edu.vn/index.php/jca/article/view/589
 
  • La The Vinh, Nguyen The Duong, Nguyen Quang Bac, Ngo Quang Tung, Vu T. Tan, Sacrificial template accelerated hydrolysis synthesis of high surface area stainless steel wire mesh-supported zinc-based mixed oxides: ZnCo2O4, Zn2MnO4 and Zn0.3Ni0.7O4, Vietnam Journal of Catalysis and Adsorption, 8 – issue 1 (2019) 46-53.  Open access.  
https://jca.edu.vn/index.php/jca/article/view/595?articlesBySameAuthorPage=2
 
  • Vu T. Tan, La The Vinh, Tran Ngoc Khiem, Huynh Dang Chinh, Facile Template In-Situ Fabrication of ZnCo2O4 Nanoparticles with Highly Photocatalytic Activities under Visible-Light Irradiation. Bulletin of Chemical Reaction Engineering & Catalysis, 14 (2) 2019, 404-412. 
https://journal.bcrec.id/index.php/bcrec/article/view/3613
 
  • La The Vinh, Tran Ngoc Khiem, Huynh Dang Chinh, Pham Van Tuan, Vu T. Tan “Adsorption capacities of reduced graphene oxide: Effect of reductants” Materials Research Express. 2019, 6 ,075615.
https://iopscience.iop.org/article/10.1088/2053-1591/ab1862
  • Pham Van Tuan, Le Trung Hieu, Vu Thi Tan, Tran Thi Phuong, Tran Thi Quynh Hoa, Tran Ngoc Khiem. The dependence of morphology, structure, and photocatalytic activity of SnO2/rGO nanocomposites on hydrothermal temperature, Materials Research Express, 2019,  6, 106204.
https://iopscience.iop.org/article/10.1088/2053-1591/ab1e12
  • T. Tan Vu, The Vinh La, Ngoc Khiem Tran, Dang Chinh Huynh. A comprehensive review on the sacrificial template‐accelerated hydrolysis synthesis method for the fabrication of supported nanomaterials. Journal of the Iranian Chemical Society, 2020, 17, 229–245.
https://link.springer.com/article/10.1007/s13738-019-01764-6
  • T. Tan Vu, The Vinh La, Le Tu Quynh, Huynh Thu Suong, and Huynh Dang Chinh. A novel synthesis of nanoflower-like zinc borate from zinc oxide at room temperature. Materials Research Express, 2020 , 7 ,015059.
https://iopscience.iop.org/article/10.1088/2053-1591/ab67fa
  • T. Tan Vu, The Vinh La, Huynh Dang Chinh, Pham Van Tuan, Chan Ngoc Khiem. A new approach for the fabrication of tetragonal BaTiO3 nanoparticles, Journal of Nanoscience and Nanotechnology, 2021, 21, 2692-2701.
https://pubmed.ncbi.nlm.nih.gov/33500095/
  • Pham Van Tuan, Le Trung Hieu, Vu Thi Tan, Tran Thi Quynh Hoa, La Quynh Hoa, Tran Ngoc. The Dependence of Structure, Morphology, and Photocatalytic Properties of SnO2 Nanoparticles Prepared via In Situ Hydrothermal Method on Annealing Temperature. Journal of Nanoscience and Nanotechnology, 2021, 21(4), 2588-2594.
https://www.researchgate.net/publication/350558968_The_Dependence_of_Structure_Morphology_and_Photocatalytic_Properties_of_SnO_Nanoparticles_Prepared_via_In_Situ_Hydrothermal_Method_on_Annealing_Temperature
 
  •  Pham Van Tuan, Tran Thi Phuong, Vu Thi Tan, Sang Xuan Nguyen, Tran Ngoc Khiem. In-situ hydrothermal fabrication and photocatalytic behavior of ZnO/reduced graphene oxide nanocomposites with varying graphene oxide concentrations, Materials Science in Semiconductor Processing, 2020, 115, 105114.
https://data.mendeley.com/datasets/tw3fvnrf73/1
  • T. Tan Vu, La The Vinh, Van Tuan Pham, Minh Khoi Vu, Ngoc Khiem Tran, Dang Chinh Huynh, Highly efficient adsorbent for the transformer oil purification by ZnO/Graphene composite Arabian Journal of Chemistry, 2020, 13, 7798-7808.
https://www.sciencedirect.com/science/article/pii/S187853522030335X
  • Pham Van Tuan, Le Trung Hieu, Chu Manh Hoang, Hoang Ba Tuong, Vu Thi, Tran Thi Quynh Hoa, Nguyen Xuan Sang, Tran Ngoc Khiem. Effects of annealing temperature on the structure, morphology, and photocatalytic properties of SnO2/rGO nanocomposites. Nanotechnolog , 2021, 32, 015201.
https://iopscience.iop.org/article/10.1088/1361-6528/abac30
  •  T. Tan Vu, Thi Chien Hoang, Thi Huong Ly Vu, Thu Suong Huynh, The Vinh La. Template-free fabrication strategies for 3D nanoporous Graphene in desalination applications.Arabian Journal of Chemistry, 2021, 14, 103088.
https://www.sciencedirect.com/science/article/pii/S1878535221001039
  • T. Tan Vu, Hoang Thi Chien, La The Vinh. Expanded Graphite-based Membrane for Water Desalination, Desalination and Water Treatment, 2021, 234, 324-332.
https://www.sciencedirect.com/science/article/pii/S1944398624090957
  • Pham Van Tuan, Hoang Ba Tuong, Vu Thi Tan , Luong Hoai Thu , Nguyen Duc Khoang, Tran Ngoc Khiem , SnO2/reduced graphene oxide nanocomposites for highly efficient photocatalytic degradation of methylene blue, Optical Materials, 123( 2022) 111916.
https://www.sciencedirect.com/science/article/abs/pii/S0925346721011162
  • Le, Thi Thu Hien ; Vu, T. Tan ; Ngo, Duc Quan ; Cao, Xuan Thang ; Duong, Thanh-Tung ; Nguyen, D. H. ; Tran, Ngoc Khiem ; Pham, Van Tuan, Microstructure and photocatalytic activity of SnO2:Bi3+ nanoparticles, Optical Materials, Volume 137, article id. 113552.
https://www.sciencedirect.com/science/article/abs/pii/S0925346723001246
  • Tan T. Vu, Chi Linh Nguyen, Tuan Van Pham, Highly effective graphene membrane for transformer oil purification, Vietnam Journal of Catalysis and Adsorption, 2023 (12), 43-49.
https://jca.edu.vn/index.php/jca/article/view/2023.028
  • Pham Van Tuan, Trinh Thi Ha, Nguyen Duy Hung, Vu Thi Tan, Tran Thi Quynh Hoa, Dinh Thi Ha, Le Tien Ha, and Tran Ngoc Khiem , Reduction of graphene oxide (GO) to reduced graphene oxide (rGO) at different hydrothermal temperatures and enhanced photodegradation of zinc oxide/rGO composites, 2024, Phys. Scr. 99 015912.
https://iopscience.iop.org/article/10.1088/1402-4896/ad1088
  • Tuan Pham Van, Hoang Ba Tuong, Vu Thi Tan, Luong Hoai Thu, Nguyen Duc Khoang, Ngoc Khiem Chan, SnO2/reduced graphene oxide nanocomposites for highly efficient photocatalytic degradation of methylene blue; 2022; Optical Materials.
https://www.sciencedirect.com/science/article/abs/pii/S0925346721011162
 
  • Le, Thi Thu Hien ; Vu, T. Tan ; Ngo, Duc Quan ; Cao, Xuan Thang ; Duong, Thanh-Tung ; Nguyen, D. H. ; Tran, Ngoc Khiem ; Pham, Van Tuan search by orcid, Microstructure and photocatalytic activity of SnO2:Bi3+ nanoparticles, 2023; Optical Materials;
https://www.sciencedirect.com/science/article/abs/pii/S0925346723001246
  • Tuan Pham Van, Hoang Phi Hung, Nguyen Ngoc Vu, Ha Le Tien, Chan Thi Quynh Hoa, Vu Thi Tan, Ngoc Khiem Chan, COMPARISON STUDY OF PHOTOCATALYTIC DEGRADATION OF METHYLENE BLUE AND RHODAMINE B WITH ZnO NANORODS PREPARED BY USING THE HYDROTHERMAL METHOD; 2024; TNU Journal of Science and Technology 229(06):302-312.
  • Vu Thi Tan; La The Vinh; Nguyen Hoang Tuan; Tran Tuan Diep; Pham Van Tuan; Synthesis of α-Al2O3 nanosize by combustion reaction using sucrose and graphene oxide as fuel precursors;2024; Journal of Crystal Growth; 652:128048.
https://www.sciencedirect.com/science/article/abs/pii/S0022024824004858

+ Sáng chế:  

 

Tìm kiếm cán bộ
Bạn đã không sử dụng Site, Bấm vào đây để duy trì trạng thái đăng nhập. Thời gian chờ: 60 giây