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

Senior Croucher Fellowship rewards CityUHK clean energy expert

 

More effective control over the fabrication of semiconductors using nanomaterials for various applications to enhance global sustainability is the principal aim behind an exciting project that has helped earn Professor Zhang Hua of City University of Hong Kong (CityUHK) a highly prestigious Croucher Senior Research Fellowship.

The HK$2 million grant that comes with the Croucher Fellowship will enable Professor Zhang, Herman Hu Chair Professor of Nanomaterials at CityUHK, to pursue this groundbreaking work in phase engineering for nanomaterials.

“The project has excellent potential for various applications, including catalysis, optoelectronic devices, and solar energy conversion,” said Professor Zhang, who has also won the Bank of China Science and Technology Innovation Prize for research into similar areas of sustainability and clean energy.

In alignment with the United Nation’s SDG 7 (Affordable and Clean Energy), Professor Zhang spearheads research into stabilising unconventional-phase nanomaterials that have direct applications in clean energy, catalysis and sensors. His innovative Phase Engineering of Nanomaterials strategy has significantly advanced catalytic activity and energy technologies, providing new solutions for sustainable development and environmental concerns.

“I work in the field of heterostructures, which are one kind of hybrid nanomaterials composed of two or more components,” said Professor Zhang.

This is a vital part of research into clean energy because noble metal/semiconductor heterostructures have shown great potential in various applications.

“This is due to their integrated physicochemical properties and synergistic effects between different components,” Professor Zhang said. 

Lots of time and efforts have recently been poured into finetuning different components’ sizes, dimensions, morphologies, interfaces, and spatial arrangements to enhance their performance. However, control over the (crystal) phases of noble metal/semiconductor heterostructures is rarely achieved. 

“This control is crucial for modulating their physicochemical properties and enhancing the application performance of noble metal/semiconductor heterostructures,” Professor Zhang added.

In the Croucher-supported project, Professor Zhang and his team will develop a straightforward wet-chemical synthesis of amorphous noble metal/crystalline semiconductor heterostructures, evaluate the structure-property-application relationship of the synthesised heterostructures, and use the fabricated amorphous noble metal/crystalline semiconductor heterostructures as photocatalysts for manufacturing high-purity fine chemicals using solar energy. 

These metal/semiconductor heterostructures can be used for broad applications in creating green energy by optimising heterostructure photocatalysts that can help provide new solutions for sustainable development and environmental concerns.

Media enquiries:
Michael Gibb, Communications and Institutional Research Office, CityUHK (Tel: 3442 6802) 
Sharon Lee, Communications and Institutional Research Office, CityUHK (Tel: 3442 5768)
 

YOU MAY BE INTERESTED

Back to top
利博百家乐的玩法技巧和规则| 百家乐必胜法hk| 百家乐官网园选百利宫| 怎样看百家乐牌| 百家乐怎么赢博彩正网| 双柏县| 网络百家乐| 澳门百家乐官网游戏皇冠网| 名仕百家乐的玩法技巧和规则 | 百家乐软件稳赚| 马牌百家乐官网现金网| 万龙百家乐的玩法技巧和规则| 网上真钱麻将| 圣安娜百家乐代理| 誉博百家乐官网开户导航| 德州扑克哪个平台好| 中华娱乐城| 赌场百家乐是如何玩| 百家乐官网娱乐城怎么样| 威尼斯人娱乐场28gxpjwnsr | 威尼斯人娱乐网赌| 大桥下做生意风水好吗| 宁都县| 大发8887s88| 百家乐庄闲和游戏机| 新奥博百家乐官网娱乐城| 88娱乐城开户| 威尼斯人娱乐城百家乐| 百家乐视频游戏会员| 澳门百家乐官网娱乐城送体验金| 360棋牌游戏| 牌九百家乐的玩法技巧和规则| 太阳百家乐官网网| 百家乐官网网站加盟| 大发888在线下载| 百家乐必胜方程式| 百家乐官网论坛| 百家乐官网如何买大小| 大发888官方下载 网站| 百家乐透视牌靴| 海立方百家乐赢钱|