Tien Manh
Tiến Sĩ
Trường Đại học Công nghệ Giao thông vận tải
Đơn vị: Khoa Công nghệ thông tin
Quá trình nghiên cứu khoa học
- stars 1. Các đề tài nghiên cứu khoa học đã tham gia
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TTTên đề tàiNăm hoàn thànhĐề tài cấp
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1Synthesis and applicability development of novel nanocomposites based on CoFe2O4 magnetic nanoparticles and 3D-MOFs (Fe-BTC or MIL-101(Cr)) porous materials for electrochemical sensing nanoplatform toward effective monitoring of CAP antibiotic residues in animal-based food productsVai trò: Thành viên2024Cấp Trường
- stars 2. Các công trình khoa học đã công bố
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TTTên công trìnhNămNơi công bố
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1Smart 3D Ag-decorated TiO2 Nanostructure: An Advanced Synergistic SERS Substrate for Trace Detection of Analytes with Diverse Natures2024Sensors and Actuators B Chemical
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2Visible Light as a Promising Signal Amplification Tool for the Efficient Electrochemical Detection of Azithromycin Antibiotic by Using Photoactive Spinel Nickel Ferrite Nanoflakes2024Journal of The Electrochemical Society
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3An insight of light-enhanced electrochemical kinetic behaviors and interfacial charge transfer of CuInS2/MoS2-based sensing nanoplatform for ultra-sensitive detection of chloramphenicol2023Analytica Chimica Acta
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4Exploiting the Effect of Inversion Degree, Phase, and Size in Nickel Ferrite Nanoparticles: Implications for Electrochemical Behaviors and Magnetic Hyperthermia Properties2023Sensors and Actuators A: Physical
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5Ultrasensitive Detection of Crystal Violet Using a Molybdenum Sulfide-Silver Nanostructure-based Sensing Platform: Roles of the Adsorbing Semiconductor on SERS Signal Enhancement2023Analytical Methods
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6Toward a Comprehensive Understanding of Effect of Cation Distribution and M2+ Constituent in Spinel Ferrite Nanocrystals Mfe2o4 (M = Co, Mn, and Ni) on the Electrochemical Response in Sensitive Detection of Chloramphenicol2023SSRN Electronic Journal
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7Toward a Comprehensive Understanding of Effect of Cation Distribution and M2+ Constituent in Spinel Ferrite Nanocrystals MFe2O4 (M = Co, Mn, and Ni) on the Electrochemical Response in Sensitive Detection of Chloramphenicol2023Journal of Alloys and Compounds
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8A molybdenum disulfide/nickel ferrite-modified voltammetric sensing platform for ultra-sensitive determination of clenbuterol under the presence of an external magnetic field2023RSC Advances
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9Exploring the Impact of Structural and Physical Properties of Layered Molybdenum Disulfide on Electrochemical Characteristics and The Sensitive Response to Chloramphenicol Detection2023Journal of The Electrochemical Society
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10Toward a Comprehensive Understanding of Effect of Cation Distribution and M2+ Constituent in Spinel Ferrite Nanocrystals Mfe2o4 (M = Co, Mn, and Ni) on the Electrochemical Response in Sensitive Detection of Chloramphenicol2022SSRN Electronic Journal
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11Electronic Structure and Magnetocaloric Effect of Sr-Doped SmCoO3 Perovskites2022Journal of Electronic Materials
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12Advances in magnetic field-assisted electrolyte's physicochemical properties and electrokinetic parameters: A case study on the response ability of chloramphenicol on Fe3O4@carbon spheres-based electrochemical nanosensor2022Analytica Chimica Acta
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13Metamagnetism and Magnetocaloric Effect of LiPr(PO3)4 Crystal2022Journal of Electronic Materials
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14Magnetocaloric effect in Ba-doped LaCoO3 cobaltites showing second-order phase transitions2021Journal of Magnetism and Magnetic Materials
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15Structural, magnetic and magnetocaloric properties of double perovskite Ho2MMnO6 (M = Fe, Co, and Ni)2021Journal of Magnetism and Magnetic Materials
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16Structural and Magnetic Properties Control of Pr0.7Ba0.3MnO3 with Sr-Doping2020Physics of the Solid State
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17Magnetocaloric effect in Tb 2 O 3 and Dy 2 O 3 nanoparticles at cryogenic temperatures2020Journal of Applied Physics
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18Enhanced magnetocaloric effect in Eu-doped La0.7Ca0.3MnO3 compounds2020Current Applied Physics
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19Magnetic and Table-Like Magnetocaloric Properties of Polycrystalline Pr0.7Ba0.1Sr0.2MnO32019Journal of Electronic Materials
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20Critical behavior and magnetocaloric effect in La 0.7 Ba 0.25 Nd 0.05 Mn 1-x Cu x O 32019AIP Advances
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21Direct observation of terahertz emission from ultrafast spin dynamics in thick ferromagnetic films2019Applied Physics Letters
- stars 3. Giáo trình, tài liệu đã xuất bản
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TTTên giáo trình, tài liệuNămNơi xuất bản
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Chưa có thông tin
- stars 4. Hướng dẫn sau đại học
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TTHọc viênTên luận văn, luận ánNăm hoàn thành
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Chưa có thông tin