SCI paper: 185, Non-SCI paper: 11, Patent: 12, Book Chapter: 1
Citation Number: 10,145 (H-index: 51)
Book Chapters
B1. J.S. Jang and H. Park*, Strategic design of heterojunction CdS photocatalysts for solar hydrogen, in: R. Subramanian, B. Viswanathan, and J.S. Lee (Eds.), Materials and Processes for Solar Fuel Production, Springer 2014.
SCI-Journal
(2024) (13편)
190. Hanh Thi My Truong, Khen Duy Tran, Y. Ahn, K. Kim, J. S. Jang*, J. Kim*, (2024) Under Review.
189. Ruturaj P. Patil, P. Anushkkaran, Mahadeo A. Mahadik, W. Chae, H. G. Kim*, B. Kim*, J. S. Jang*, "Development of inogranic-organic CdSe(en)0.5 via microwave-assisted method and topotactic into porous CdSe nanosheet photoanode for photoelectrochemical hydrogen production", J. Colloid Interface Sci., 679 (2024) 1001-1009 (IF: 9. 4).
188. M. S. Song, R.uturaj P. Patil, Mahadoe A. Mahadik, You Jin Jo, J. Park, W. Chae, S. H. Choi, H. Lee*, J. S. Jang*, "Microwave-assisted CuO-modified porous ZnO nanosheet for photocatalytic degradation of organic pollutants and antibacterial inactivation", J. Environ. Chem. Eng., 12 (2024) 114453 (IF: 7.7).
187. B. H. Oh, B. Yoon, S. Ahn, J. S. Jang, D. Lim*, I. Seo*, "High Energy Density Lithium Sulfur Battery Based on a Lithium Polysulfide Catholyte and Carbon Nanofiber Cathode", Energies,17 (2024) 5258 (I.F.: 3.0).
186. Ruturaj P. Patil, Mahadeo A. Mahadik, W. Cahe, J. Ryu*, B. Kim*, J. S. Jang*, "Boosting photoelectrochemical hydrogen production performance by in-situ transformation of self-assembled Cd(OH)2 nanowire on CdS nanorod", Appl. Surf. Sci., 680 (2024) 161314 (I.F.: 6.3).
185. P. Anushkkaran, Ruturaj P. Patil, W. Chae, M. Kumar, S. H. Choi, H. H. Lee, H. G. Kim*, B. Kim*, J. S. Jang*, "Acceleration of bulk and surface charge transfer dynamics via FePi cocatalyst-coated Ti/(Sb)-Fe2O3:Sb/(Ti)-Fe2O3 type-II homojunction photoanode for photoelectrochemical performance", Chem. Eng. J., 495 (2024) 153862 (IF: 13.3).
184. Y. J. Jo, Ruturaj P. Patil, M. S. Song, W. Chae, Mahadeo A. Mahadik*, M. Cho*, J. S. Jang*, "In2O3-ZnO nanoporous photocatalyst modified with CuOx cocatalyst for enhanced photocatalytic bacterial inactivation and dye degradation", Appl. Surf. Sci., 669 (2024) 160416 (I.F.: 6.3).
183. I. S. Hwang, Mahadeo A. Mahadik, M. S. Song, Y. J. Cho, W. Chae, S. H. Choi*, J. S. Jang*, "In-situ Hf/Zr co-doped Fe2O3 nanorod decorated with CuOx/CoOx: Enhanced photocatalytic performance for antibacterial and organic pollutants", Chemosphere 360 (2024) 142450 (I.F.: 8.1).
182. M. S. Song, Mahadeo A. Mahadik, P. Anushkkaran, W. Chae, H. Lee*, J. S. Jang*, "Surface-tailoring of TiO2 NR photoanodes via CoOx interlayer and dual NiFe-LDH cocatalysts for photoelectrochemical bacteria inactivation and organic pollutants removal", 361 (2024) Chemosphere 142554 (I.F.: 8.1).
181. P. Anushikkaran, Y. Kwon, T. S. Koh, S. H. Kim, W. Chae, S. H. Choi, H. Lee. J. Kim*, J. S. Jang*, "Unveiling the significance of diverse valence state second dopants on Hf-doped Fe2O3 photoanodes for enhanced photoelectrochemical water splitting", ACS Sustain. Chem. Eng. 12 (2024) 5001-5009 (IF: 7.1).
180. P. Anushikkaran, W. Chae, J. Ryu*, S. H. Choi*, J. S. Jang*, "Expediting hole transfer kinetics through surface states modulation of Ru-FeOOH and FeNi(OH)x dual-layer cocatalyst coated Zr-Fe2O3 photoanode for boosting photoelectrochemical water splitting", J. Mater. Chem. A, 12 (2024) 4702-4711 (IF: 10.7).
179. T. S. Koh, P. Anushkkaran, Love Kumar Dhandole, W. Chae, H. Lee, S. H. Choi*, and J. S. Jang*, "Unravelling the role of the combined effect of metallic charge transfer channel and SiOx overlayer in the Zr/Si-Fe2O3:Au:SiOx nanorod arrays to boost photoelectrochemical water spliiting", J. Energy Chem., 90 (2024) 370-379 (IF: 14.0).
178. T. S. Koh, P. Anushkkaran, Mahadeo A. Mahadik, W. S. Chae, H. Lee, S. H. Choi*, J. S. Jang*, "Kinetic study of the enhanced photoelectrochemical properties of microwave-assisted Al and Si co-doped Zr-Fe2O3 photoanodes", Appl. Surf. Sci., 642 (2024) 158615 (I.F.: 6.3)
(2023) (18편)
177. P. Anushkkaran, Mahadeo A. Mahadik, W. S. Chae, H. H. Lee, S. Choi*, and J. S. Jang*, "Hierarchical Zr-dopoed Fe2O3 photoanodes decorated with in situ Au nanoparticles via a surfactant-assisted one-step hydrothermal approach for efficient photoelectrochemical water splitting", J. Mater. Chem. A, 11 (2023) 26105-26114 (IF: 11.9).
176. M. S. Song, Ruturaj P. Patil, I. S. Hwang, Mahadeo A. Mahadik, T. H Jang, B. T. Oh, W. Chae, S. H. Choi, H. H. Lee*, and J. S. Jang*, "In situ fabrication of Ag decorated porous ZnO photocatalyst via inorganic-organic hybrid transformation for degradatioin of organic pollutant and bacterial inactivation", Chemosphere 341 (2023) 140057 (I.F.: 8.8)
175. Mahadeo A. Mahadik, P. Anushkkaran, W. S. Chae, H. Lee, M. Cho*, J. S. Jang*, "TiO2 nanorod/nanotube interface reconstruction and synergistic role of oxygen vacancies and gold in H-Au-TiO2 NR/NT for photoelectrochemical bacterial inactivation and water splitting", Chemosphere 341 (2023) 139968 (I.F.: 8.8)
174. J. B. Hwang, Mahadeo A. Mahadik, P. Anushkkaran, S. H. Choi, W. Chae, M. Kumar, H. M. Pathan, H. Lee* and J. S. Jang*, "Co-dependency of TiO2 underlayer and ZrO2 top layer in sandwiched microwave-assisted Zr-Fe2O3 photoanode for photoelectrochemical water splitting", Sustain Energy & Fuels 7 (2023) 4914-4921 (I.F.: 5.6)
173. Ruturaj. P. Patil, Mahadeo A. Mahadik, W. Chae*, S. H. Choi*, J. S. Jang*, "Porous Zn1-xCdxSe/ZnO Nanorod Photoanode Fabricated from ZnO Building Blocks Grown on Zn Foil for Photoelectrochemical Solar Hydrogen Production", ACS Appl. Mater. Interfaces, 15 (2023) 37361-37370 (IF: 9.5)
169. I. S. Hwang, Mahadeo A. Mahadik, M. S. Song, S. W. Lee, B. Oh, H. Lee, W. Chae, S. H. Choi*, J. S. Jang*, "Influence of Ultrafast Microwave Deposition on Morphology and Growth Mechanism of WO3 Nanosheet Photoanode for Efficient Bacterial Inactivation and Decomposition of Organic Pollutants", J. Environ. Chem. Eng., 11 (2023) 109985 (IF: 7.7).
168. Ruturaj. P. Patil, Mahadeo A. Mahadik, W. Chae*, J. S. Jang*, "Understanding Systematic Growth Mechanism of Porous Zn1-xCdxSe/TiO2 Nanorod Heterojunction from ZnSe(en)0.5/TiO2 Photoanodes for Bias-Free Solar Hydrogen Evolution", J. Colloid Interface Sci., 644 (2023) 246-255 (IF: 9. 9).
167. H.S. Bae, R. P. Patil, J. H. Hwang, Mahadeo A. Mahadik, M. S. Song, W. Chae, V. Manikandan*, J. S. Jang*, "Visible Light Responsive Hydrogen Reduced CoOx Loaded Rh/Sb:SrTiO3 Nanocubic Photocatalyst for Degradation of Organic Pollutants and Inactivation of Bacteria", J. Environ. Chem. Eng., 11 (2023) 109837 (IF: 7.7).
165. P. Anushkkaran, Mahadeo A. Mahadik, W. Chae, H. Lee, S. H. Choi, J. S. Jang*, "Microwave-assisted Sequential Pt/Al Attachment on FeOOH for Fabrication of Highly Efficient Hematite Photoanodes: Syngerstic Effect of Pt/Al co-doping and Al2O3 Passivation Layer", Appl. Surf. Sci., 623 (2023)157035
(IF: 6.7).
90. M. Govarthanan, M. Cho, J. H. Park, J. S. Jang, Y. Yi, S. Kamala-Kannan, B. T. Oh, "Cottonseed oilcake extract mediated green synthesis of silver nanoparticles and its antibacterial and cytotoxic activity", J. Nanomater., (2016) 7412431/1~6 (IF: 1.758)
89. L. K. Dhandole, J. Ryu, J. M. Lim, B. T. Oh, J. H. Park, B. G. Kim*, J. S. Jang*, "Hydrothermal Synthesis of Titanate Nanotubes from TiO2 Nanorods Prepared via a Molten Salt Flux Method as an Effective Adsorbent for Strontium Ion Recovery", RSC Adv., 6 (2016) 98449-98456 (IF: 3.289)
88. P. S. Shinde, J. W. Park, M. A. Mahadik, J. Ryu, J. H. Park, Y. Yi*, J. S. Jang*, "Fabrication of efficient CdS nanoflowers-decroated TiO2 nanotubes array heterojunction photoanode by a novel synthetic approach for solar hydrogen production", Inter. J. Hydrogen Energy, 41 (2016) 21078-21087(IF: 3.205)
86. P. Valmurugan, J. H. Park, S. M. Lee, Y. J. Yi, M. Cho, J. S. Jang, H. Myung, K. S. Bang, B. T. Oh,"Eco-friendly approach towards green synthesis of zinc oxide nanocrystals and its potential applications", Artificial Cells, Nanomedicine, and Biotechnology, 44 (2016) 1537-1543. (IF:2.024)
85. P. Valmurugan, J. H. Park, S. M. Lee, J. S. Jang, Y. J. Yi, S. S. Han, S. H. Lee, K. M. Cho, M. Cho, B.T. Oh, "Phytofabrication of bioinspired zinc oxide nanocrystals for biomedical application", Artificial Cells, Nanomedicine and Biotechnology, 44 (2016) 1529-1536. (IF:2.024 )
83. J. S. Jang, S. J. Hong, E. S. Kim, H. G. Kim, S. H Choi*, J. S. Lee*, "Photocatalytic activity of electron deficient and porous WO3 nanoparticles derived from thermal oxidation of bulk WC particles", J. Photo-chem. Photobiol. A: Chem., 330 (2016) 37-43 (IF: 2.477)
82. A. Subramanian, A. Annamalai, H. Lee, S. Choi, J. Ryu, J. Park, J. S. Jang*, "Trade-off between Zr passivation and Sn doping on hematite nanorod photoanodes for efficient solar water oxidation: Effects of ZrO2 underlayer and FTO deformation", ACS Appl. Mater &Interf., 8 (2016) 19428-19437(IF: 7.145)
Non-SCI Journal
11. P.S. Shinde, A. Annamalai, J. H. Kim, S. H. Choi, J. S. Lee*, J. S. Jang*, "Photoelectrochemical,
impedance and optical data for self Sn-diffusion doped Fe2O3 photoanodes fabricated at high
temperature by one and two-step annealing methods", Data in Brief, 5 (2015) 796-804.
10. J.S. Jang, "Slurry-typed visible active photocatalyst for solar hydrogen production",
Photoscience World 44 (2012) 25-32.
9. J. S. Jang, H. G. Kim and J. S. Lee "Photocatalysis", Catalysis 21 (2010) 18-26.
8. E. D. Jeong, Pramod H. Borse, J. S. Jang, J. S. Lee, O. S. Jung, H. Chang, J. S. Jin, M. S. Won and H. G.
Kim, “Hydrothermal synthesis of Cr and Fe co-doped TiO2 nanoparticle photocatalyst”, J. Ceramic
Processing Research, 9(3) (2008) 250-253.
7. J. S. Jang, H. G. Kim, J. S. Lee, “Design of nanocomposite photocatalysts for solar hydrogen production”,
Hwahak Konghak, 45(5) (2007) 415-423. (Review Paper)
6. S. W. Bae, H. G. Kim, S. M. Ji, J. S. Jang, E. D. Jeong, S. J. Hong and J. S. Lee, “Fabrication of
M-Doped TiO2 (M=Co, Cr, Fe) : Its Electronic Band Structure-(1), J. the Korean ceramic Society,
43(1) (2006) 22-27.
5. J. S. Jang, S. M. Ji, J. S. Lee, W. Li and S. H. Oh, “Anoxic Hydrogen Production over CdS-based
Composite Photocatalysts”, Stud. Surf. Sci. Catal., 159 (2006) 201-204.
4. J. S. Jang, W. W. So, K. J. Kim, S. J. Moon, “Photoelectrochemical and Hydrogen Production
Characteristics of CdS-TiO2 Nanocomposite Photocatalysts Synthesized in Organic Solvent”, Trans.
Korean Hydrogen Energy Soc., 13(3) (2002) 224-232.
3. J. S. Jang, W. W. So, K. J. Kim, S. J. Moon, “Effect of Surface Treatment of CdS-TiO2 Composite
Photocatalysts with Film Type on Hydrogen Production”, Trans. Korean Hydrogen Energy Soc., 13(1)
(2002) 34-41.
2. S. S. Kim, J. S. Jang, W. W. So, K. J. Kim, S. J. Moon, “Hydrogen Production using CdS-TiO2 Composite
Photocatalysts”, J. Korean Hydrogen Energy Soc., 11(4) (2000) 161-169.
1. J. S. Jang, H. Y. Chang, W. W. So, Y. W. Rhee, S. J. Moon, “Effect of Surface Treatment of Hydrogen
Production of Cadmium Sulfide Particulate Film Electrodes”, J. Korean Hydrogen Energy Soc., 11(3)
(2000) 119-125.