百家乐怎么玩-澳门百家乐官网娱乐城网址_网上百家乐是不是真的_全讯网888 (中国)·官方网站

Back

  • Asia & Oceania

Hydrogen generation breakthrough by CityU-led international collaboration holds great promise for clean future

An international team led by City University of Hong Kong (CityU) has announced a groundbreaking step forward that has added significantly to the technical know-how required to clean up the planet. The discovery, published in one of the world’s premier science journals, Nature, centres on developing a highly efficient electrocatalyst that can enhance hydrogen generation through electrocatalytic water splitting. Titled “Phase-dependent growth of Pt on MoS2 for highly efficient H2 evolution”, the paper was published on 13 September in London. Cleaner energy sources are desperately needed, but the challenges in weaning the world off fossil fuels and onto more sustainable energies are enormous. [caption id="attachment_37121" align="aligncenter" width="1017"] An international research team led by Professor Zhang Hua has successfully developed a highly efficient electrocatalyst that can enhance hydrogen generation through electrocatalytic water splitting.[/caption] “Hydrogen generated by electrocatalytic water splitting is regarded as one of the most promising clean energies for replacing fossil fuels in the near future, reducing environmental pollution and the greenhouse effect,” said Professor Zhang Hua, Herman Hu Chair Professor of Nanomaterials at CityU, who is spearheading the research. Professor Zhang’s collaborators include Professor Anthony R. J. Kucernak from the Department of Chemistry at Imperial College London and researchers from universities and research institutes in Hong Kong, mainland China, Singapore and the UK. The critical development in the CityU-led research is establishing novel catalysts by using the transition-metal dichalcogenide (TMD) nanosheets as supports, enabling superior efficiency and high stability during the electrocatalytic hydrogen evolution reaction (HER), a vital step in electrocatalytic water-splitting, also known as the water electrolysis technique, for hydrogen production. The team has been exploring how to enhance the performance of the HER process by engineering the crystal phase of nanomaterials for several years. Although TMD nanosheets with unconventional crystal phases possess great potential to be used as catalyst supports, fabricating such sheets pure enough for HER is far from straightforward. But in this research, Professor Zhang’s team has developed a new method to prepare unconventional-phase TMD nanosheets with high phase-purity and quality. Furthermore, they have investigated the crystal phase-dependent growth of noble metals on the TMD nanosheet supports. Technically speaking, they found that the 2H-phase template facilitates the epitaxial growth of Pt nanoparticles, whereas the 1T′-phase template supports single-atomically dispersed Pt atoms (s-Pt). The synthesised s-Pt/1T′-MoS2 serves as a highly efficient catalyst for HER and can work for 500 hours in the water electrolyser, demonstrating that 1T′-TMD nanosheets could be effective supports for catalysts. “We will develop more efficient catalysts based on this finding and explore their applications in various catalytic reactions,” said Dr Shi Zhenyu, a postdoctoral researcher in CityU’s Department of Chemistry and the first author of the paper. These findings expand the scope of phase engineering in nanomaterials, paving the way for the design and synthesis of highly efficient catalysts, contributing to cleaner energies and more sustainable development.
Heart Icon Heart Icon

QS GEN is looking for stories

Share your institution's latest developments with us.

Submit a story
KK百家乐官网现金网| 百家乐视频对对碰| 百家乐官网娱乐备用网址| 百家乐九| 百家乐赌场详解| 百家乐客户端下载| 百家乐官网博娱乐网赌百家乐官网| 百家乐官网gamble| 百家乐官网论坛代理合作| 明光市| 足球投注技巧| 最新博彩论坛| 娱乐城开户送体验金| 六合彩报码室| 优博代理| 长顺县| 澳门赌盘| bet365娱乐城注册| 崇左市| 百家乐官网游戏程序下载| 东丰县| 百家乐官网游戏软件出售| 太阳城百家乐官网下载网址| 百家乐官网大钱赢小钱| 博彩百家乐官网字谜总汇二丹东| 职业赌百家乐官网技巧| 赌博百家乐官网的玩法技巧和规则 | 川宜百家乐分析软件| 澳门百家乐官方网址| 凱旋门百家乐的玩法技巧和规则| 大发888下载删除| 佳豪国际| 皇冠百家乐官网赢钱皇冠| 澳门百家乐视频| 百家乐园百乐彩| 清新县| 百家乐官网赌场分析网| 百家乐官网与21点| 做生意的信风水吗| 北京太阳城医院怎么样| 皇冠网最新网址|