Boosted Hydrogen Evolution Catalysis Using Biomass-Derived Mesoporous Carbon Nanospongesopen access
- Authors
- Sekar, Sankar; Sadhasivam, Sutha; Shanmugam, Atsaya; Sekar, Saravanan; Lee, Youngmin; Lee, Sejoon
- Issue Date
- Sep-2025
- Publisher
- MDPI
- Keywords
- biomass; neem leaves; ginkgo leaves; activated carbon; electrocatalysts; hydrogen evolution reaction
- Citation
- International Journal of Molecular Sciences, v.26, no.17, pp 1 - 14
- Pages
- 14
- Indexed
- SCIE
SCOPUS
- Journal Title
- International Journal of Molecular Sciences
- Volume
- 26
- Number
- 17
- Start Page
- 1
- End Page
- 14
- URI
- https://scholarworks.dongguk.edu/handle/sw.dongguk/61596
- DOI
- 10.3390/ijms26178502
- ISSN
- 1661-6596
1422-0067
- Abstract
- Carbon-based metal-free catalysts, particularly those such as biomass-derived mesoporous activated carbon (AC) nanostructures, hold great promises for cost-effective and sustainable electrocatalysis for enhancing hydrogen evolution reaction (HER) performance in green energy technology. Neem and ginkgo leaves are rich in bioactive compounds and self-doping heteroatoms with naturally porous structures and act as a low-cost, sustainable biomass precursors for high-performance HER catalysts. In this study, mesoporous AC nanoflakes and nanosponges were synthesized using biomass precursors of neem and ginkgo leaves through a KOH activation process. Notably, AC nanosponges derived from ginkgo leaves exhibited outstanding physicochemical characteristics, including a sponge-like porous morphology with a large specific surface area of 1025 m2/g. For electrochemical evaluation in 0.5 M H2SO4, the G-AC sample revealed superior electrocatalytic HER performance, with a remarkably low overpotential of 26 mV at -10 mA/cm2, a small Tafel slope of 24 mV/dec, and long-term durability over 30 h. These results depict biomass-derived mesoporous AC nanosponges to hold substantial potential for highly efficient hydrogen production, contributing significantly to the advancement of eco-friendly energy solutions.
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Collections - College of Advanced Convergence Engineering > Division of System Semiconductor > 1. Journal Articles

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