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Mechanochemical engineering and supramolecular reconstruction of MoS2 nanosheets with C60-γCD complexes for enhanced photocatalytic and piezoelectric performances
- Bu, Seok Hyeong;
- Cho, Wansu;
- Lee, Chaewon;
- Ham, Gayoung;
- Yang, Beomjoo;
- ... Cha, Hyojung;
- 외 2명
WEB OF SCIENCE
7SCOPUS
8초록
Conventional exfoliation methods for bulk MoS2, such as liquid phase exfoliation and ball milling, involve complex, energy-intensive steps, making it challenging to develop efficient catalytic systems due to the cumbersome processes and low yields. In this study, we present a novel, solvent-free, one-step mechanochemical process for a three-component heterostructure of MoS2, cyclodextrin (gamma CD), and fullerene (C-60) for catalytic hydrogen production. Upon grinding with an agate and mortar, the in-situ formation of a supramolecular complex of gamma CD and C-60 synergistically induces lever-based fragmentation of MoS2, significantly increasing the exposure of active edge sites and enhancing interactions within the MoS2-C-60-gamma CD heterostructure. This simple method greatly improves water dispersibility and maximizes the catalytic activity of the MoS2, reinforcing its photocatalytic and piezoelectric performance in hydrogen production through supramolecular interactions with the assembled C-60-gamma CD nanocomplex. The interfacial and electrochemical synergistic effects based on supra- molecular design lead to a simple and effective fabrication process with robust photocatalytic performance, demonstrating the practicality of mechanochemical techniques for high-performance MoS2 heterostructure catalysis systems.
키워드
- 제목
- Mechanochemical engineering and supramolecular reconstruction of MoS2 nanosheets with C60-γCD complexes for enhanced photocatalytic and piezoelectric performances
- 저자
- Bu, Seok Hyeong; Cho, Wansu; Lee, Chaewon; Ham, Gayoung; Yang, Beomjoo; Jung, Jongwon; Cha, Hyojung; Park, Chiyoung
- 발행일
- 2024-12-15
- 유형
- Article
- 권
- 502
- 언어
- ENG
- 출판사
- ELSEVIER SCIENCE SA
- 발행국가
- 스위스
- ISSN
- E 1873-3212
P 1385-8947