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Two-Dimensional Layered Hydroxide Nanoporous Nanohybrids Pillared with Zero-Dimensional Polyoxovanadate Nanoclusters for Enhanced Water Oxidation Catalysis

Title
Two-Dimensional Layered Hydroxide Nanoporous Nanohybrids Pillared with Zero-Dimensional Polyoxovanadate Nanoclusters for Enhanced Water Oxidation Catalysis
Authors
Gunjakar, Jayavant L.Hou, BoInamdar, Akbar I.Pawar, Sambhaji M.Ahmed, Abu Talha AqueelChavan, Harish S.Kim, JongminCho, SangeunLee, SeongwooJo, YongcheolHwang, Seong-JuKim, Tae GeunCha, SeungNamKim, HyungsangIm, Hyunsik
Ewha Authors
황성주
SCOPUS Author ID
황성주scopus
Issue Date
2018
Journal Title
SMALL
ISSN
1613-6810JCR Link

1613-6829JCR Link
Citation
SMALL vol. 14, no. 49
Keywords
chemical solution growthcontrolled nanoporositylayered nickel hydroxidenanocluster intercalationwater oxidation catalysis
Publisher
WILEY-V C H VERLAG GMBH
Indexed
SCIE; SCOPUS WOS scopus
Document Type
Article
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.
DOI
10.1002/smll.201703481
Appears in Collections:
자연과학대학 > 화학·나노과학전공 > Journal papers
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