Self-assembled two-dimensional copper oxide nanosheet bundles as an efficient oxygen evolution reaction (OER) electrocatalyst for water splitting applicationsopen access
- Authors
- Pawar, Sambhaji M.; Pawar, Bharati S.; Hou, Bo; Kim, Jongmin; Ahmed, Abu Talha Aqueel; Chavan, Harish. S.; Jo, Yongcheol; Cho, Sangeun; Inamdar, Akbar I.; Gunjakar, Jayavant L.; Kim, Hyungsang; Cha, SeungNam; Im, Hyunsik
- Issue Date
- 7-Jul-2017
- Publisher
- ROYAL SOC CHEMISTRY
- Citation
- JOURNAL OF MATERIALS CHEMISTRY A, v.5, no.25, pp 12747 - 12751
- Pages
- 5
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- JOURNAL OF MATERIALS CHEMISTRY A
- Volume
- 5
- Number
- 25
- Start Page
- 12747
- End Page
- 12751
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/24776
- DOI
- 10.1039/c7ta02835k
- ISSN
- 2050-7488
2050-7496
- Abstract
- A high activity of a two-dimensional (2D) copper oxide (CuO) electrocatalyst for the oxygen evolution reaction (OER) is presented. The CuO electrode self-assembles on a stainless steel substrate via chemical bath deposition at 80 degrees C in a mixed solution of CuSO4 and NH4OH, followed by air annealing treatment, and shows a 2D nanosheet bundle-type morphology. The OER performance is studied in a 1 M KOH solution. The OER starts to occur at about 1.48 V versus the RHE (eta = 250 mV) with a Tafel slope of 59 mV dec(-1) in a 1 M KOH solution. The overpotential (h) of 350 mV at 10 mA cm(-2) is among the lowest compared with other copper-basedmaterials. The catalyst can deliver a stable current density of > 10 mA cm(-2) for more than 10 hours. This superior OER activity is due to its adequately exposed OER favorable 2D morphology and the optimized electronic properties resulting from the thermal treatment.
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- Appears in
Collections - College of Natural Science > Department of Physics > 1. Journal Articles
- College of Advanced Convergence Engineering > Division of System Semiconductor > 1. Journal Articles

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