Sustainable eco‐friendly sub‐micron NaCl crystal powder‐assisted method to synthesize SiOx/C as anode materials originated from rice husk for lithium‐ion batteries

Author:

Lee Se Hun1,Cho Youngseul2,Jeon Young Pyo1,Chang Yujin3ORCID,Lee Kyu Sang3,Hong Dongpyo1,Jeon Ok Sung1,Park Yongyeol13,Yang Hyun Seo1,Yoo Young Joon1,Park Sang Yoon14,Piao Yuanzhe3ORCID

Affiliation:

1. Center for Applied Electromagnetic Research for Advanced Institute of Convergence Technology Seoul National University Gyeonggi‐do Republic of Korea

2. Program in Nano Science and Technology, Graduate School of Convergence Science and Technology Seoul National University Suwon‐Si Republic of Korea

3. Department of Applied Bioengineering, Graduate School of Convergence Science and Technology Seoul National University Suwon‐Si Republic of Korea

4. School of Electronic Engineering Kyonggi University Suwon‐si Republic of Korea

Abstract

AbstractIn the present study, we produced SiOx/C from rice husk by the NaCl sub‐micron crystal‐assisted synthesis method which can mitigate environmental degradation and hazards, simplify preparation, and improve electrochemical performance. During synthesis, NaCl induces catalytic graphitization, carbon activation, and amorphous silica formation. Moreover, it is only partially consumed and can be recrystallized and reused indefinitely. Our NaCl sub‐micron crystal powder‐assisted method created lithium‐ion batteries (LIBs) with rice husk‐derived SiOx/C anodes that exhibited a high initial charge/discharge capacity of 422.05/915.93 mAh∙g−1 at 0.05 A∙g−1 current density and stable cycling performance. In addition, the SiOx/C electrode produced by the NaCl micro‐crystal method had 333.96 mAh∙g−1 capacity at 0.05 A∙g−1 current density. By contrast, bare rice husk electrode exhibited a lower capacity of 333.96 mAh∙g−1at the same condition.image

Funder

Korea Institute of Energy Technology Evaluation and Planning

Publisher

Wiley

Subject

Materials Science (miscellaneous),Physical and Theoretical Chemistry,Chemistry (miscellaneous)

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