2022 |
293 |
Redox-driven strong interfacial interactions between MnO₂ and covalent organic nanosheets for efficient oxygen reduction electrocatalysis
M.-S. Kim,† T.-H. Gu,† S. Park,† T. Kim, Y. K. Jo, Y. K. Jeong,* J. K. Park,* and S.-J. Hwang*
J. Mater. Chem. A (IF= 14.511),
10, 15508-15519,
2022/08/07, Royal Society of Chemistry, published |
LINK
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292 |
Water-assisted formation of amine-bridged carbon nitride: a structural insight into the photocatalytic performance for H₂ evolution under visible light
D. Jang, S. Choi, N. H. Kwon, K. Y. Jang, S. Lee, T.-W. Lee, S.-J. Hwang, H. Kim, J. Kim,* and S. Park*
Appl. Catal. B: Environ. (IF=24.319),
310, 121313,
2022/08/05, Elsevier, published |
LINK
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291 |
Composition-controlled ultrathin holey TiO₁₋ₓNₓ nanosheets as powerful hybridization matrices for highly mass-efficient electrocatalysts
X. Jin,† K.-G. Lee,† T. Lee,† G. Lee, S. M. Oh, A. Soon,* and S.-J. Hwang*
Chem. Eng. J. (IF= 16.744),
437, 135415,
2022/06/01, Elsevier, published |
LINK
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290 |
Multilayer conductive hybrid nanosheets as versatile hybridization matrices for optimizing the defect structure, structural ordering, and energy-functionality of nanostructured materials
N. H. Kwon, X. Jin, S.-J. Kim, H. Kim*, and S.-J. Hwang*
Adv. Sci. (IF= 17.521),
9(2), 2103042,
2022/01/14, Wiley VCH, published |
LINK
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289 |
In situ defect engineering route to optimize the cationic redox activity of layered double hydroxide nanosheet via strong electronic coupling with holey substrate
X. Jin,† T. Lee,† W. Tamakloe,† S. B. Patil, A. Soon*, Y.-M. Kang*, and S.-J. Hwang*
Adv. Sci. (IF= 17.521),
9(1), 2103368,
2022/01/05, Wiley VCH, published |
LINK
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2021 |
288 |
Atomically dispersed Co₂-N₆ and Fe-N₄ costructures boost oxygen reduction reaction in both alkaline and acidic media
Z. Wang, X. Jin, C. Zhu, Y. Liu, H. Tan, R. Xi, Y. Zhang, L. Zhou, Z. Liu, S.-J. Hwang*, and H. J. Fan*
Adv. Mater. (IF=30.849),
33(49), 2104718,
2021/12/09, Wiley VCH, published |
LINK
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285 |
Lattice engineering to simultaneously control the defect/stacking structures of layered double hydroxide nanosheets to optimize their energy functionalities
N. Kim,† T.-H. Gu,† D. Shin,† X. Jin, H. Shin, M. G. Kim, H. Kim*, and S.-J. Hwang*
ACS Nano (IF=15.881),
15(5), 8306-8318,
2021/05/25, American Chemical Society, published
Selected as a Supplementary Cover paper
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LINK
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284 |
Enhanced interfacial electron transfer between Thylakoids and RuO₂ nanosheets for photosynthetic energy harvesting
H. Hong,† J. M. Lee,† J. H. Yun, Y. J. Kim, S. Kim, H. Shin, H. S. Ahn, S. -J. Hwang,* and W. Ryu,*
Sci. Adv. (IF=14.136),
7(20), eabf2543,
2021/05/12, AAAS, published |
LINK
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2020 |
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279 |
Monolayered g-C₃N₄ nanosheet as an emerging cationic building block for bifunctional 2D superlattice hybrid catalysts with controlled defect structures
N. H. Kwon,† S.-J. Shin,† X. Jin, Y. Jung, G.-S. Hwang, H. Kim,* and S.-J. Hwang*
Appl. Catal. B: Environ. (IF=19.503),
277, 119191,
2020/11/15, Elsevier, published
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LINK
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