상세 보기
- Bui, Hoa Thi;
- Lam, Nguyen Duc;
- Linh, Do Chi;
- Mai, Nguyen Thi;
- Chang, HyungIl;
- ... Shrestha, Nabeen K.;
- 외 5명
WEB OF SCIENCE
31SCOPUS
30초록
Developing highly efficient and durable hydrogen evolution reaction (HER) electrocatalysts is crucial for addressing the energy and environmental challenges. Among the 2D-layered chalcogenides, MoSe2 possesses superior features for HER catalysis. The van der Waals attractions and high surface energy, however, stack the MoSe2 layers, resulting in a loss of edge active catalytic sites. In addition, MoSe2 suffers from low intrinsic conductivity and weak electrical contact with active sites. To overcome the issues, this work presents a novel approach, wherein the in situ incorporated diethylene glycol solvent into the interlayers of MoSe2 during synthesis when treated thermally in an inert atmosphere at 600 & DEG;C transformed into graphene (Gr). This widened the interlayer spacing of MoSe2, thereby exposing more HER active edge sites with high conductivity offered by the incorporated Gr. The resulting MoSe2-Gr composite exhibited a significantly enhanced HER catalytic activity compared to the pristine MoSe2 in an acidic medium and demonstrated a superior HER catalytic activity compared to the state-of-the-art Pt/C catalyst, particularly at a high current density beyond ca. 55 mA cm(-2). Additionally, the MoSe2-Gr catalyst demonstrated long-term electrochemical stability during HER. This work, thus, presents a facile and novel approach for obtaining an efficient MoSe2 electrocatalyst applicable in green hydrogen production.
키워드
- 제목
- Escalating Catalytic Activity for Hydrogen Evolution Reaction on MoSe2@Graphene Functionalization
- 저자
- Bui, Hoa Thi; Lam, Nguyen Duc; Linh, Do Chi; Mai, Nguyen Thi; Chang, HyungIl; Han, Sung-Hwan; Oanh, Vu Thi Kim; Pham, Anh Tuan; Patil, Supriya A.; Tung, Nguyen Thanh; Shrestha, Nabeen K.
- 발행일
- 2023-07
- 유형
- Article
- 저널명
- Nanomaterials
- 권
- 13
- 호
- 14
- 페이지
- 1 ~ 13