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2021 (Total 13 International Journals) 

72. Dae Hyun Kim1, Gi Dae Park1, Yun Chan Kang*, "Novel synthesis method of cobalt hydroxycarbonate hydrate-reduced graphene oxide composite microspheres for lithium-ion battery anode" Int. J. Energy Res. (2021) (Accepted) <IF:5.164, JCR Ranking Top : 1.47 %> (1 These authors contributed equally to this work.) 

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71. Su Hyun Yang1, Gi Dae Park1, Jin Koo Kim, Yun Chan Kang*, "New strategy to synthesize optimal cobalt diselenide@hollow mesoporous carbon nanospheres for highly efficient hydrogen evolution reaction" Chem. Eng. J. 2021, 424, 130341. <IF: 13.273, JCR Ranking Top: 2.45 %> (1 These authors contributed equally to this work.) 

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70. Jun Yeob Lee1, Gi Dae Park1, Jung Hyun Kim, Jeong Hoo Hong, Yun Chan Kang*, "Synthesis of three-dimensional Co/CoO/N-doped carbon nanotube composite for zinc air battery" Int. J. Energy Res. 2021, 45, 16091-16101. <IF: 5.164, JCR Ranking Top: 1.47 %> (1 These authors contributed equally to this work.) 

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69. Gi Dae Park, Yun Chan Kang*, "Yolk-shell-structured nanospheres with goat pupil-like S-doped SnSe yolk and hollow carbon-shell configuration as anode material for sodium-ion storage" Small Methods 2021, 5, 2100302. <IF: 14.188, JCR Ranking Top: 7.04 %> 

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68. Ju Hyung Kim1, Gi Dae Park1, Yun Chan Kang*, "Synthesis of yolk-shell-structured iron monosulfide-carbon microspheres and understanding of their conversion reaction for potassium-ion storage" Int. J. Energy Res. 2021, 45, 14910. <IF: 5.164, JCR Ranking Top: 1.47 %> (1 These authors contributed equally to this work.) 

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67. Jeong Hoo Hong1, Ju Hyeong Kim1, Gi Dae Park, Jun Yeob Lee, Jung-Kul Lee*, Yun Chan Kang*, "A strategy for fabricating three-dimensional porous architecture comprising metal oxides/CNT as highly active and durable bifunctional oxygen electrocatalysts and their application in rechargeable Zn-air batteries" Chem. Eng. J. 2021, 414, 128815. <IF: 13.273, JCR Ranking Top: 2.45 %> (1 These authors contributed equally to this work.) 

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66. Jin-Sung Park, Gi Dae Park, Yun Chan Kang*, "Exploration of cobalt selenite–carbon composite porous nanofibers as anode for sodium-ion batteries and unveiling their conversionreaction mechanism" J. Mater. Sci. Technol. 2021, 89, 24-35. <IF: 8.067, JCR Ranking Top: 3.12 %> 

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65. Gi Dae Park1, Jin-Sung Park1, Jin Koo Kim1, Yun Chan Kang*, "Recent advances in heterostructured anode materials with multiple anions for advanced alkali-ion batteries" Adv. Energy Mater. 2021, 11, 2003058. <IF: 29.369, JCR Ranking Top: 2.78 %> (1 These authors contributed equally to this work.) 

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64. Ju Hyung Kim1, Gi Dae Park1, Yun Chan Kang*, "Initial investigation of bimetal hydroxysulfide as a new anode material for efficient sodium-ion storage" Chem. Eng. J. 2021, 410, 128401. <IF: 13.273, JCR Ranking Top: 2.45 %> (1 These authors contributed equally to this work.) 

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63. Su Hyun Yang1, Seung-Keun Park1, Gi Dae Park, Ju Hyeong Kim, Yun Chan Kang*, "Rational synthesis of uniform yolk–shell Ni–Fe bimetallic sulfide nanoflakes@porous carbon nanospheres as advanced anodes for high-performance potassium-/sodium-ion batteries" Chem. Eng. J. 2021, 417, 127963. <IF: 13.273, JCR Ranking Top: 2.45 %> (1 These authors contributed equally to this work.) 

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62. Ju Hyeong Kim, Gi Dae Park, Su Hyun Yang, Jeong Hoo Hong, Jin Koo Kim, Yun Chan Kang*, "Uniquely structured iron hydroxide-carbon nanospheres with yolk-shell and hollow structures and their excellent lithium-ion storage performances" Appl. Surf. Sci. 2021, 542, 148637. <IF: 6.707, JCR Ranking Top: 2.38 %>

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61. Gi Dae Park1, Ju Hyeong Kim1, Yun Chan Kang*, "General strategy for yolk-shell nanospheres with tunable compositions by applying hollow carbon nanospheres" Chem. Eng. J. 2021, 406, 126840. <IF: 13.273, JCR Ranking Top: 2.45 %> (1 These authors contributed equally to this work.) 

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60. Jae Hun Choi, Gi Dae Park, Yun Chan Kang*, "Potassium-ion storage mechanism of MoS2-WS2-C microspheres and their excellent electrochemical properties" Chem. Eng. J. 2021, 408, 127278. <IF: 13.273, JCR Ranking Top: 2.45 %> (1 These authors contributed equally to this work.) 

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