상세 보기
- Won, Yo Seob;
- Kirubasankar, Balakrishnan;
- Kim, Hyung-Jin;
- Kwon, Ik Seon;
- Kim, Jae Woo;
- ... Kim, Soo Min;
- 외 3명
WEB OF SCIENCE
3SCOPUS
3초록
CoFe layered double hydroxide (LDH) has emerged as a promising oxygen evolution reaction (OER) electrocatalyst but exhibits low intrinsic activity and instability at high current densities, limiting industrial applicability. Herein, a phase-engineering strategy is reported to derive highly crystalline phase-transformed hexagonal Fe-Co3O4 (PH-FCO) via selenization of CoFe LDH to form Fe-Co0.85Se, followed by electrochemical activation. Selective Se leaching during activation induces a morphological transition from needle-like Fe-Co0.85Se to hexagonal PH-FCO. The resulting PH-FCO achieves a high current density of 2 A cm-2 and maintains stability for over 300 h at 500 mA cm-2 and 1 A cm-2. Enhanced crystallinity formed during phase transformation effectively suppresses dissolution and preserves active catalytic sites. First-principles density functional theory calculations reveal that Fe incorporation promotes lattice oxygen oxidation, improves electronic conductivity, and reduces energy barriers. An anion exchange membrane water electrolyzer (AEMWE) incorporating PH-FCO as the anode and NiMo alloy as the cathode delivers 1.91 V at a current density of 1 A cm-2 and maintains stable operation for over 150 h at 500 mA cm-2. Accelerated degradation tests exhibit minimal voltage drift, confirming the robustness of PH-FCO for industrial-scale alkaline water electrolysis.
키워드
- 제목
- Phase Transformation of Needle-Like Fe-Co0.85Se to Hexagonal Fe-Co3O4 for Enhanced High-Current-Density Oxygen Evolution via Lattice Oxygen Redox
- 저자
- Won, Yo Seob; Kirubasankar, Balakrishnan; Kim, Hyung-Jin; Kwon, Ik Seon; Kim, Jae Woo; Ko, Hayoung; Han, Young-Kyu; Kim, Soo Min; Kim, Ki Kang
- 발행일
- 2025-09
- 유형
- Article; Early Access
- 저널명
- Small
- 권
- 21
- 호
- 36