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Fawad Tariq
Fawad Tariq
Ph.D. Researcher, Chonnam National University
在 jnu.ac.kr 的电子邮件经过验证
标题
引用次数
引用次数
年份
Influence of Fe doping on the structural, optical and thermal properties of α-MnO2 nanowires
A Khan, AM Toufiq, F Tariq, Y Khan, R Hussain, N Akhtar, S ur Rahman
Materials Research Express 6 (6), 065043, 2019
882019
Enhanced antibacterial activity of visible light activated sulfur-doped TiO2 nanoparticles against Vibrio cholerae
F Tariq, R Hussain, Z Noreen, A Javed, A Shah, A Mahmood, M Sajjad, ...
Materials Science in Semiconductor Processing 147, 106731, 2022
192022
Highly effective visible light-activated cobalt-doped TiO2 nanoparticles for antibacterial coatings against Campylobacter jejuni
M Ali, R Hussain, F Tariq, Z Noreen, AM Toufiq, H Bokhari, N Akhtar, ...
Applied Nanoscience 10, 1005-1012, 2020
172020
ur Rahman S
T Ali, R Hussain, F Tariq, Z Noreen, AM Toufiq, H Bokhari, N Akhtar
Zhang L., Shahid M., Zhang S., Liu G., Gao J., Han B. ESBL-producing …, 2017
142017
Exploiting the complete efficacy of 3D-nitrogen-doped ZnO nanowires photoanode via type-II ZnS core-shell formation toward highly stable photoelectrochemical water splitting
IV Bagal, P Mane, M Arunachalam, H Bae, MA Kulkarni, F Tariq, SH Kang, ...
Materials Today Physics 34, 101087, 2023
132023
Room temperature photoluminescence in plasma treated rutile TiO2 (110) single crystals
F Tariq, N ur Rehman, N Akhtar, RE George, Y Khan, S ur Rahman
Vacuum 171, 108999, 2020
102020
Commercial-scale reproducible GaN nanowires with 6.4% solar to hydrogen conversion efficiency in photoelectrochemical water splitting
A Abdullah, F Tariq, MA Kulkarni, H Thaalbi, JS Ha, JK Lee, SW Ryu
Materials Today Physics 36, 101165, 2023
92023
Epitaxial growth of 1D GaN-based heterostructures on various substrates for photonic and energy applications
A Abdullah, MA Kulkarni, H Thaalbi, F Tariq, SW Ryu
Nanoscale Advances 5 (4), 1023-1042, 2023
92023
Large scale fabrication of GaN nanorods template and characterization of MOCVD grown InGaN/GaN quantum wells on {101‾ 0} plane of GaN nanorods
MA Kulkarni, H Ryu, HJ Choi, A Abdullah, H Thaalbi, F Tariq, SH Lee, ...
Optical Materials 145, 114488, 2023
42023
Highly efficient visible-light-driven CdS-loaded ZnO-GaN nanowire photoanode fabricated on Si for H2 evolution
F Tariq, A Abdullah, MA Kulkarni, H Thaalbi, JK Lee, SW Ryu
Journal of Alloys and Compounds 973, 172901, 2024
32024
Enhanced photoelectrochemical water splitting performance of GaN nanowires on textured Si (100) platforms: The role of texturing in 3.69% STH conversion efficiency
F Tariq, A Abdullah, MA Kulkarni, H Thaalbi, IV Bagal, SH Kang, JS Ha, ...
Materials Today Physics 38, 101275, 2023
22023
A strategy to grow three dimensional InGaN/GaN heterostructure exclusively on non-polar m-plane of two-step etched GaN nanorods
MA Kulkarni, H Ryu, HJ Choi, A Abdullah, H Thaalbi, F Tariq, SH Lee, ...
Applied Surface Science 654, 159529, 2024
12024
Eco-Friendly In2S3 Cocatalyst Assisted GaN Nanowires for Enhanced Solar-Driven Water Splitting
A Abdullah, F Tariq, MA Kulkarni, H Thaalbi, JS Ha, JK Lee, SW Ryu
Energy & Fuels 38 (5), 4637-4644, 2024
12024
High-efficiency entangled hierarchical GaN nanowire-based photoanode for solar-driven water splitting
A Abdullah, F Tariq, MA Kulkarni, H Thaalbi, JS Ha, JK Lee, SW Ryu
Applied Surface Science 643, 158647, 2024
12024
Enhancing PEC hydrogen generation efficiency: Robust ZnO-GaN hierarchical nanowires loaded with NiS for superior charge separation and transportation
F Tariq, A Abdullah, MA Kulkarni, H Thaalbi, HU Din, MA Hassan, ...
Journal of Alloys and Compounds 1002, 175547, 2024
2024
Three-dimensional core shell InGaN/GaN heterostructure for color tunable emitters on the aspect ratio controlled GaN nanorods
MA Kulkarni, H Ryu, S Park, A Abdullah, H Thaalbi, F Tariq, SH Lee, ...
Applied Surface Science 663, 160144, 2024
2024
Porous GaN Nanopyramids: Advancing Beyond Conventional Nanostructures for High‐Brightness InGaN/GaN Quantum Wells Emission
H Thaalbi, B Kim, A Abdullah, MA Kulkarni, F Tariq, HU Din, YH Cho, ...
Advanced Functional Materials, 2406467, 2024
2024
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