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Defect-rich N-doped CeO2 supported by N-doped graphene as a metal-free plasmonic hydrogen evolution photocatalyst
- Van Dao, Dung;
- Jung, Hyun Dong;
- Nguyen, Thuy T. D.;
- Ki, Sang-Woo;
- Son, Hoki;
- ... Lee, In-Hwan;
- 외 6명
WEB OF SCIENCE
51SCOPUS
57초록
Heteroatom doping into metal oxides advantageously modulates optoelectronic properties and provides promising possibilities for efficient light-to-energy conversion. Herein, nitrogen-doped ceria (N-CeO2) nanoparticles are prepared and then coupled with nitrogen-doped graphene (N-Gr) to create an active and long-lasting N-CeO2/N-Gr heterocatalyst. Optoelectronic features of N-doping materials (e.g., plasmon) are significantly improved toward the visible-light region, particularly for 3.9% N-CeO2/N-Gr nanocomposites. Namely, the 3.9% N-CeO2 possesses numerous catalytic active defects (N states, oxygen vacancy, and Ce3+ species), leading to a narrow bandgap energy and to the improved plasmonic properties of the ceria host, while the N-Gr preferably serves as an electron scavenger to collect plasmon-generated hot electrons migrating from 3.9% N-CeO2 to drive photocatalytic reactions under the irradiation of visible-light. Resultantly, the 3.9% N-CeO2/N-Gr photocatalyst delivers an impressive hydrogen evolution reaction (HER) rate of 3.7 mu mol mg(cat)(-1) h(-1) under visible-light, which is 2.0- and 8.2-fold greater than those obtained from 3.9% N-CeO2 and CeO2 ones, respectively. Additionally, the combination of 3.9% N-CeO2 and N-Gr synergistically produces a long-lasting plasmonic HER photocatalyst system. Metal-free plasmonic N-doped oxides supported by N-doped graphene pave a promising pathway for efficient light-to-hydrogen fuel production accordingly.
키워드
- 제목
- Defect-rich N-doped CeO2 supported by N-doped graphene as a metal-free plasmonic hydrogen evolution photocatalyst
- 저자
- Van Dao, Dung; Jung, Hyun Dong; Nguyen, Thuy T. D.; Ki, Sang-Woo; Son, Hoki; Bae, Kang-Bin; Le, Thanh Duc; Cho, Yeong-Hoon; Yang, Jin-Kyu; Yu, Yeon-Tae; Back, Seoin; Lee, In-Hwan
- 발행일
- 2021-04-28
- 유형
- Article
- 권
- 9
- 호
- 16
- 페이지
- 10217 ~ 10230