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Two-Dimensional Layered Hydroxide Nanoporous Nanohybrids Pillared with Zero-Dimensional Polyoxovanadate Nanoclusters for Enhanced Water Oxidation Catalysis.
Gunjakar, Jayavant L; Hou, Bo; Inamdar, Akbar I; Pawar, Sambhaji M; Ahmed, Abu Talha Aqueel; Chavan, Harish S; Kim, Jongmin; Cho, Sangeun; Lee, Seongwoo; Jo, Yongcheol; Hwang, Seong-Ju; Kim, Tae Geun; Cha, SeungNam; Kim, Hyungsang; Im, Hyunsik.
Afiliación
  • Gunjakar JL; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Hou B; D. Y. Patil Education society (Deemed to be University), Kolhapur, MS, 416006, India.
  • Inamdar AI; Department of Engineering Science, University of Oxford, Parks Road, OX1 3PJ, UK.
  • Pawar SM; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Ahmed ATA; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Chavan HS; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Kim J; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Cho S; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Lee S; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Jo Y; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Hwang SJ; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
  • Kim TG; Center for Intelligent Nano-Bio Materials (CINBM), Department of Chemistry and Nano Sciences, Ewha Womans University, Seoul, 03670, South Korea.
  • Cha S; School of Electrical Engineering, Korea University, Seongbuk-gu, Seoul, 02841, South Korea.
  • Kim H; Department of Engineering Science, University of Oxford, Parks Road, OX1 3PJ, UK.
  • Im H; Division of Physics and Semiconductor Science, Dongguk University, Seoul, 04620, South Korea.
Small ; 14(49): e1703481, 2018 Dec.
Article en En | MEDLINE | ID: mdl-30371003
ABSTRACT
The oxygen-evolution reaction (OER) is critical in electrochemical water splitting and requires an efficient, sustainable, and cheap catalyst for successful practical applications. A common development strategy for OER catalysts is to search for facile routes for the synthesis of new catalytic materials with optimized chemical compositions and structures. Here, nickel hydroxide Ni(OH)2 2D nanosheets pillared with 0D polyoxovanadate (POV) nanoclusters as an OER catalyst that can operate in alkaline media are reported. The intercalation of POV nanoclusters into Ni(OH)2 induces the formation of a nanoporous layer-by-layer stacking architecture of 2D Ni(OH)2 nanosheets and 0D POV with a tunable chemical composition. The nanohybrid catalysts remarkably enhance the OER activity of pristine Ni(OH)2 . The present findings demonstrate that the intercalation of 0D POV nanoclusters into Ni(OH)2 is effective for improving water oxidation catalysis and represents a potential method to synthesize novel, porous hydroxide-based nanohybrid materials with superior electrochemical activities.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Small Asunto de la revista: ENGENHARIA BIOMEDICA Año: 2018 Tipo del documento: Article País de afiliación: Corea del Sur

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Idioma: En Revista: Small Asunto de la revista: ENGENHARIA BIOMEDICA Año: 2018 Tipo del documento: Article País de afiliación: Corea del Sur