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A morphology, porosity and surface conductive layer optimized MnCo₂O₄ microsphere for compatible superior Li⁺ ion/air rechargeable battery electrode materials
- Yun, Young Jun;
- Kim, Jin Kyu;
- Ju, Ji Young;
- Unithrattil, Sanjith;
- Lee, Sun Sook;
- ... Park, Jin-Seong;
- ... Im, Won Bin;
- 외 3명
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16SCOPUS
17초록
Uniform surface conductive layers with porous morphology-conserved MnCo₂O₄ microspheres are successfully synthesized, and their electrochemical performances are thoroughly investigated. It is found that the microwave-assisted hydrothermally grown MnCo₂O₄ using citric acid as the carbon source shows a maximum Li⁺ ion lithiation/delithiation capacity of 501 mA h g⁻¹ at 500 mA g⁻¹ with stable capacity retention. Besides, the given microsphere compounds are effectively activated as air cathode catalysts in Li-O-2 batteries with reduced charge overpotentials and improved cycling performance. We believe that such an affordable enhanced performance results from the appropriate quasi-hollow nature of MnCo₂O₄ microspheres, which can effectively mitigate the large volume change of electrodes during Li⁺ migration and/or enhance the surface transport of the LiOx species in Li-air batteries. Thus, the rationally designed porous media for the improved Li⁺ electrochemical reaction highlight the importance of the 3D macropores, the high specific area and uniformly overcoated conductive layer for the promising Li⁺ redox reaction platforms.
키워드
- 제목
- A morphology, porosity and surface conductive layer optimized MnCo₂O₄ microsphere for compatible superior Li⁺ ion/air rechargeable battery electrode materials
- 제목 (타언어)
- A morphology, porosity and surface conductive layer optimized MnCo2O4 microsphere for compatible superior Li+ ion/air rechargeable battery electrode materials
- 저자
- Yun, Young Jun; Kim, Jin Kyu; Ju, Ji Young; Unithrattil, Sanjith; Lee, Sun Sook; Kang, Yongku; Jung, Ha-Kyun; Park, Jin-Seong; Im, Won Bin; Choi, Sungho
- 발행일
- 2016-02
- 유형
- Article
- 권
- 45
- 호
- 12
- 페이지
- 5064 ~ 5070