虎门体育官方登录入口网:标题
虎门体育官方登录入口网:作者
作者:Zhu, M (Zhu, Min)[1,2 ]; Lu, YS (Lu, Yanshan)[1,2 ]; Ouyang, LZ (Ouyang, Liuzhang)[1,2 ]; Wang, H (Wang, Hui)[1,2 ]
虎门体育官方登录入口网:期刊信息
虎门体育官方登录入口网:摘要
Mg-based hydrides are one of the most promising hydrogen storage materials because of their relatively high storage capacity, abundance, and low cost. However, slow kinetics and stable thermodynamics hinder their practical application. In contrast to the substantial progress in the enhancement of the hydrogenation/dehydrogenation kinetics, thermodynamic tuning is still a great challenge for Mg-based alloys. At present, the main strategies to alter the thermodynamics of Mg/MgH2 are alloying, nanostructuring, and changing the reaction pathway. Using these approaches, thermodynamic tuning has been achieved to some extent, but it is still far from that required for practical application. In this article, we summarize the advantages and disadvantages of these strategies. Based on the current progress, finding reversible systems with high hydrogen capacity and effectively tailored reaction enthalpy offers a promising route for tuning the thermodynamics of Mg-based hydrogen storage alloys.
虎门体育官方登录入口网:关键词
作者关键词:Mg-based hydrogen storage alloys; thermodynamics; alloying; nanostructuring; changing reaction pathway
虎门体育官方登录入口网:作者信息
通讯作者地址:Zhu, M (通讯作者)
| S China Univ Technol, Sch Mat Sci & Engn, Guangzhou 510641, Guangdong, Peoples R China. |
地址:
| [ 1 ] S China Univ Technol, Sch Mat Sci & Engn, Guangzhou 510641, Guangdong, Peoples R China | |
| [ 2 ] Key Lab Adv Energy Storage Mat Guangdong Prov, Guangzhou 510641, Guangdong, Peoples R China |
电子邮件地址:memzhu@scut.edu.cn; yanshan.lu@mail.scut.edu.cn; meouyang@scut.edu.cn; mehwang@scut.edu.cn
虎门体育官方登录入口网:出版商
虎门体育官方登录入口网:类别分类
研究方向:Materials Science
Web of Science 类别:Materials Science, Multidisciplinary

