GSTDTAP  > 资源环境科学
DOI10.1038/s41893-020-0509-6
Multi-heteroatom-doped carbon from waste-yeast biomass for sustained water splitting
Tiwari, Jitendra N.1; Dang, Ngoc Kim1; Sultan, Siraj1; Thangavel, Pandiarajan1; Jeong, Hu Young2; Kim, Kwang S.1
2020-04-06
发表期刊NATURE SUSTAINABILITY
ISSN2398-9629
出版年2020
卷号3期号:7页码:556-+
文章类型Article
语种英语
国家South Korea
英文摘要

Producing hydrogen in clean, affordable and safe manners without damaging the environment can help address the challenge of meeting a growing energy demand sustainably. Yeast biomass-derived materials-such as multi-heteroatoms (nitrogen, sulfur and phosphorus) doped carbon (MHC) catalysts from waste biomass-can help develop efficient, eco-friendly and economical catalysts to improve the sustainability of hydrogen production. Here we report hydrogen and oxygen production in 1 M potassium hydroxide using ruthenium single atoms (RuSAs) along with Ru nanoparticles (RuNPs) embedded in MHC (RuSAs + RuNPs@MHC) as a cathode and magnetite (Fe3O4) supported on MHC (Fe3O4@MHC) as an anode. The RuSAs + RuNPs@MHC catalyst outperforms the state-of-the-art commercial platinum on carbon catalyst for hydrogen evolution reaction in terms of overpotential, exchange current density, Tafel slope and durability. Furthermore, compared with industrially adopted catalysts (that is, iridium oxide), the Fe3O4@MHC caalyst displays outstanding oxygen evolution reaction activity. For whole water splitting, it requires a solar voltage of 1.74 V to drive 30 mA, along with remarkable long-term stability in the presence (12 h) and absence (58 h) of outdoor-sunlight exposure, as a promising strategy towards a sustainable energy development.


Cleaner hydrogen production can help energy sustainability. The use of yeast biomass-derived materials to develop efficient, eco-friendly and economical catalysts-compared with industrially adopted catalysts-is shown to improve hydrogen production as a strategy towards a sustainable energy system.


领域资源环境
收录类别SCI-E ; SSCI
WOS记录号WOS:000523952400001
WOS关键词OXYGEN REDUCTION ; GRAPHENE ; ELECTROCATALYSTS ; NANOSHEETS ; NITROGEN ; CATALYSTS ; DESIGN ; ORR ; CO
WOS类目Green & Sustainable Science & Technology ; Environmental Sciences ; Environmental Studies
WOS研究方向Science & Technology - Other Topics ; Environmental Sciences & Ecology
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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/249340
专题资源环境科学
作者单位1.UNIST, Ctr Superfunct Mat, Dept Chem, Ulsan, South Korea;
2.UNIST, UNIST Cent Res Facil, Ulsan, South Korea
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Tiwari, Jitendra N.,Dang, Ngoc Kim,Sultan, Siraj,et al. Multi-heteroatom-doped carbon from waste-yeast biomass for sustained water splitting[J]. NATURE SUSTAINABILITY,2020,3(7):556-+.
APA Tiwari, Jitendra N.,Dang, Ngoc Kim,Sultan, Siraj,Thangavel, Pandiarajan,Jeong, Hu Young,&Kim, Kwang S..(2020).Multi-heteroatom-doped carbon from waste-yeast biomass for sustained water splitting.NATURE SUSTAINABILITY,3(7),556-+.
MLA Tiwari, Jitendra N.,et al."Multi-heteroatom-doped carbon from waste-yeast biomass for sustained water splitting".NATURE SUSTAINABILITY 3.7(2020):556-+.
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