Dr. Nguyen Quoc Hai
Position: Lecturer
Expertise: Chemical Engineering
Email: nguyenquochai@tdtu.edu.vn
Publications
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1 |
Simple fabrication of green materials from tin dioxide and biocarbon from cashew residue as anodes for advanced Li-ion batteries |
2025 |
Inorganic Chemistry Communications |
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2 |
Efficient photo-Fenton degradation of PAHs and PCBs in landfill leachate using Fe-CoBDC@ Fe3O4 catalyst synthesised from recycled PET |
2025 |
Chemija |
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3 |
Green carbon from bagasse for uniform coating of Fe2O3 nanoparticles toward high-capacity and long-life lithium-ion battery anodes |
2025 |
RSC Advances |
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4 |
Thử nghiệm màng bọc thực phẩm chứa tinh dầu/cao chiết từ lá cây hương thảo |
2025 |
Tạp chí Công Thương |
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5 |
Batch extraction of β-carotene from Gac (Momordica cochinchinensis Spreng) fruit peel |
2025 |
Chimica Techno Acta |
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6 |
Soxhlet extraction of Momordica cochinchinensis fruit peel for β-carotene recovery |
2025 |
RSC Advances |
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7 |
Quantum dots as fabricating materials for supercapacitors |
2024 |
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8 |
The mechanisms and topologies of Ru-based water oxidation catalysts: A comprehensive review |
2023 |
Ceramics International |
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9 |
Optimal tailored preparation of Sb/Sb4O5Cl2 nanosheet composite anodes for efficient sodium-ion storage |
2022 |
Electrochimica Acta |
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10 |
Review on the transformation of biomechanical energy to green energy using triboelectric and piezoelectric based smart materials |
2022 |
Journal of Cleaner Production |
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11 |
Fabricating iron-tin-oxide nanocomposite electrodes for sodium-ion batteries |
2022 |
Ceramics International |
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12 |
2021 |
Journal of Alloys and Compounds
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13 |
Efficient TiC-C hybrid conductive matrix for ZnTe anode in Lithium-ion storage |
2020 |
Applied Surface Science |
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14 |
2020 |
Chemical Engineering Journal |
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15 |
2020 |
Journal of Nanoscience and Nanotechnology |
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16 |
Few-layer NbSe2@graphene heterostructures as anodes in lithium-ion half- and full-cell batteries |
2020 |
Chemical Engineering Journal |
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17 |
High-performance ZnTe-TiO2-C nanocomposite with half-cell and full-cell applications as promising anode material for Li-Ion batteries |
2020 |
Applied Surface Science |
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18 |
Scalable synthesis of high-performance molybdenum diselenide-graphite nanocomposite anodes for lithium-ion batteries |
2019 |
Applied Surface Science |
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19 |
Enhanced performance of carbon-free intermetallic zinc titanium alloy (Zn-ZnxTiy) anode for lithium-ion batteries |
2019 |
Electrochimica Acta |
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20 |
Facile and scalable preparation of a MoS2/CNT nanocomposite anode for high-performance Lithium-ion Batteries: Effects of carbon nanotube content |
2019 |
Journal of Nanoscience and Nanotechnology |
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21 |
MoS2-TiC-C Nanocomposite as new anode materials for High-performance Lithium-ion Batteries |
2019 |
Journal of Nanoscience and Nanotechnology |
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22 |
Core-shell Si@c-PAN particles deposited on graphite as promising anode for lithium-ion batteries |
2019 |
Electrochimica Acta |
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23 |
Sb2Te3-TiC-C nanocomposites for the high-performance anode in lithium-ion batteries. |
2018 |
Electrochimica Acta |
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24 |
3D Hierarchical Structure of MoS2@ G-CNT Combined with Post-Film Annealing for Enhanced Lithium-ion Storage |
2018 |
Journal of Industrial and Engineering Chemistry |
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25 |
Comparative Study on the Mechanically Milled MoS2 and MoSe2 in Graphite Matrix as Anode Materials for High-Performance Lithium-ion Batteries |
2018 |
Journal of Nanoscience and Nanotechnology |
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26 |
High-performance MoS2-based Nanocomposite Anode Prepared by High Energy Mechanical Milling: The Effect of Carbonaceous Matrix on MoS2 |
2018 |
Electrochimica Acta |
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27 |
Investigation on capacity for bio-oil from biomass by pyrolysis method |
2013 |
Tập San Khoa Học-Đại học Bà Rịa Vũng Tàu |
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28 |
Investigation On Capacity For Fuels Gas Production From Peat By Catalytic-Pyrolysis Method Based On Crude Bentonite In Binh Thuan Province, Journal of Chemistry |
2011 |
Journal of Chemistry, Vol.49 (5AB), P.439-444, 2011 |
Patents
Korean Patent (2019): “Transition metal dichalcogenide-carbon nanocomposites and method for manufacturing the same”

