Advanced Insights into Ti-based Materials for MgH2 Hydrogen Storage: A Critical Review on Design Paradigms, Activity Evaluation and Mechanism Elucidation

Composite Functional Materials ›› 0

Composite Functional Materials ›› 0 DOI: 10.63823/20250201

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Advanced Insights into Ti-based Materials for MgH2 Hydrogen Storage: A Critical Review on Design Paradigms, Activity Evaluation and Mechanism Elucidation

  • Huanhuan Zhang,a,b Yanping Fan,a Shuyan Guan,c Wen-Gang Cui,d Mingchang Zhang,d Zhenglong Li,d Yuhai Dou,e Jiarui Yang,c Zechao Zhuang,c Zhenluo Yuan,a Shiqian Zhao,a Dingsheng Wang,c,* Baozhong Liu,a,* and Hongge Pand,*
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Abstract

Magnesium hydride (MgH2) as a solid-state hydrogen storage material has obtained intense attention in extensive research because of its high hydrogen-storage capacity, excellent reversibility, and a relatively low cost. However, two primary obstacles of slow kinetics during hydrogenation/dehydrogenation process and high thermodynamic stability of Mg-H bond hinders the large-scale application of MgH2. Therefore, developing high-efficiency catalysts is necessary for hydrogen storage system. Titanium (Ti) as an active element has the promising in enhancing hydrogen storage activity and has been reported extensively. Herein, this review summarized the synthesis approaches, testing technology, and hydrogen storage performance of various Ti-based additives in detail. The structure-activity relationship of Ti-based materials was researched by combining experiment and DFT simulations. In particular, the focus is on the investigation of synthesis, characterization and reaction mechanism of various Ti-based additives. The real active sites and different reaction mechanisms during MgH2 hydrogen storage system are discussed. Finally, a summary and outlook were also presented. This review may have potential in designing high-efficient catalysts and providing embedded guidance for future development and application of Mg-based materials during the system of hydrogen storage.

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Hydrogen storage / Ti-based additives / Structure-activity relationship / Magnesium hydride

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[J]. Composite Functional Materials. 0 https://doi.org/10.63823/20250201
Huanhuan Zhang, Yanping Fan, Shuyan Guan, Wen-Gang Cui, Mingchang Zhang, Zhenglong Li, Yuhai Dou, Jiarui Yang, Zechao Zhuang, Zhenluo Yuan, Shiqian Zhao, Dingsheng Wang, Baozhong Liu, and Hongge Pan. Advanced Insights into Ti-based Materials for MgH2 Hydrogen Storage: A Critical Review on Design Paradigms, Activity Evaluation and Mechanism Elucidation[J]. Composite Functional Materials. 0 https://doi.org/10.63823/20250201

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