상세 보기
- Kang, Bobin;
- Ha, Thanh Duy Cam;
- Michailidis Barakat, Alaelddin;
- Lee, Gyumin;
- Lee, Heehyeon;
- ... Yoon, Seok Min;
- 외 4명
WEB OF SCIENCE
1SCOPUS
1초록
The metal cation linker in metathesis-derived chalcogels critically governs structural evolution, porosity, and resultant physicochemical properties. However, most studies have emphasized atomic-scale functionality of metal linker within chalcogel network, with limited attention to local structural transformation and even long-range ordering. This work demonstrates the unprecedented role of cerium ions in directing the formation of a sustainable 2D crystalline Ce–Sn–S (CTS) chalcogel. The crystalline framework arises from coordination transformation of SnS4 tetrahedra within Sn2S6 dimers into distorted Sn3S4 broken-cube clusters, yielding a [Sn3S7]n2n− layered geometry. Cerium oxidation states, particularly Ce3+ enrichment, further stabilize the crystalline network via a templating effect and enhance electrocatalytic activity. The optimized CTS-5 chalcogel exhibits superior oxygen evolution reaction performance, including a low overpotential of 300 mV at 10 mA cm−2, the lowest Tafel slope of 80 mV dec−1, and stable operation for 50 h at 10 mA cm−2. The crystalline CTS chalcogel represents a new class of aerogel materials, where robust 2D crystallinity persists even under high cation loading, enabling functional tunability without compromising network integrity.
키워드
- 제목
- All-Scale Structural Optimization of Resiliently Crystalline Na–Ce–Sn–S Chalcogel for Efficient Oxygen Evolution Reaction Electrocatalyst
- 저자
- Kang, Bobin; Ha, Thanh Duy Cam; Michailidis Barakat, Alaelddin; Lee, Gyumin; Lee, Heehyeon; Oh, Youngtak; Kim, Hyunjeong; Chung, In; Yoon, Seok Min; Kim, Myung-Gil
- 발행일
- 2025-12
- 유형
- Article; Early Access
- 권
- 65
- 호
- 5