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首页|期刊导航|电化学与能源科学(英文)|Pulsed laser-tuned ruthenium@carbon interface for self-powered hydrogen production via zinc-hydrazine battery coupled hybrid electrolysis

Pulsed laser-tuned ruthenium@carbon interface for self-powered hydrogen production via zinc-hydrazine battery coupled hybrid electrolysis

Huieun Ahn Raja Arumugam Senthil Sieon Jung Anuj Kumar Mohd Ubaidullah Myong Yong Choi

电化学与能源科学(英文)Issue(5):160-172,13.
电化学与能源科学(英文)Issue(5):160-172,13.DOI:10.1016/j.esci.2025.100408

Pulsed laser-tuned ruthenium@carbon interface for self-powered hydrogen production via zinc-hydrazine battery coupled hybrid electrolysis

Pulsed laser-tuned ruthenium@carbon interface for self-powered hydrogen production via zinc-hydrazine battery coupled hybrid electrolysis

Huieun Ahn 1Raja Arumugam Senthil 1Sieon Jung 1Anuj Kumar 2Mohd Ubaidullah 3Myong Yong Choi4

作者信息

  • 1. Department of Chemistry(BK21 FOUR),Research Institute of Advanced Chemistry,Gyeongsang National University,Jinju 52828,Republic of Korea
  • 2. Nano-Technology Research Laboratory,Department of Chemistry,GLA University,Mathura,Uttar Pradesh 281406,India
  • 3. Department of Chemistry,College of Science,King Saud University,Riyadh 11451,Saudi Arabia
  • 4. Department of Chemistry(BK21 FOUR),Research Institute of Advanced Chemistry,Gyeongsang National University,Jinju 52828,Republic of Korea||Core-Facility Center for Photochemistry & Nanomaterials,Gyeongsang National University,Jinju 52828,Republic of Korea
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摘要

关键词

Pulsed laser ablation in liquid/Ru@C electrocatalyst/Zinc-hydrazine battery/Hybrid water electrolysis/Efficient H2 production/Hydrazine degradation

Key words

Pulsed laser ablation in liquid/Ru@C electrocatalyst/Zinc-hydrazine battery/Hybrid water electrolysis/Efficient H2 production/Hydrazine degradation

引用本文复制引用

Huieun Ahn,Raja Arumugam Senthil,Sieon Jung,Anuj Kumar,Mohd Ubaidullah,Myong Yong Choi..Pulsed laser-tuned ruthenium@carbon interface for self-powered hydrogen production via zinc-hydrazine battery coupled hybrid electrolysis[J].电化学与能源科学(英文),2025,(5):160-172,13.

基金项目

This research was supported by Korea Basic Science Institute(Na-tional research Facilities and Equipment Center)grant funded by the Ministry of Education.(No.2019R1A6C1010042 and RS-2024-00434932)and the Glocal University 30 Project Fund of Gyeongsang National University in 2024.The authors acknowledge the financial support from National Research Foundation of Korea(NRF),(2022R1A2C2010686 and 2022R1I1A1A01073299).MU acknowledges the funding support from the Researchers Supporting Project(No.RSPD2025R682),King Saud University,Riyadh,Saudi Arabia. (Na-tional research Facilities and Equipment Center)

电化学与能源科学(英文)

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