magnesium ion
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2022 ◽  
Vol 518 ◽  
pp. 230731
Author(s):  
Jinglian Zhu ◽  
Xu Zhang ◽  
Haiguang Gao ◽  
Yuting Shao ◽  
Yana Liu ◽  
...  

Author(s):  
V. S. Soldatov ◽  
T. V. Bezyazychnaya ◽  
E. G. Kosandrovich

Based on the data of ab initio calculation of the structure of (RSO3)2Mg (H2O)18 and (RSO3Rb)2(H2O)16 clusters, which simulate the structure of swollen sulfostyrene ion exchangers in the corresponding ionic forms and a water cluster of comparable size, the numbers of water molecules directly bound to cations and their coordination numbers, including the oxygen atoms of the sulfonic groups linked to the cation, were calculated. It is shown that the first molecular layer around the magnesium ion is formed from water molecules with the highest binding energy with the cluster, and around the rubidium ion – from the molecules of the nearest environment with the lowest binding energies. This is explained by the fact that the transfer of water molecules from its volume to magnesium hydrate is energetically favorable, but not to rubidium hydrate. Therefore, the magnesium ion builds its hydrate mainly from water molecules with the highest binding energy in order to obtain the greatest energy gain, and the rubidium ion – from molecules with the lowest energy, which provides the smallest energy loss.


Materials ◽  
2021 ◽  
Vol 14 (23) ◽  
pp. 7488
Author(s):  
Alejandro Medina ◽  
Carlos Pérez-Vicente ◽  
Ricardo Alcántara

A post-lithium battery era is envisaged, and it is urgent to find new and sustainable systems for energy storage. Multivalent metals, such as magnesium, are very promising to replace lithium, but the low mobility of magnesium ion and the lack of suitable electrolytes are serious concerns. This review mainly discusses the advantages and shortcomings of the new rechargeable magnesium batteries, the future directions and the possibility of using solid electrolytes. Special emphasis is put on the diversity of structures, and on the theoretical calculations about voltage and structures. A critical issue is to select the combination of the positive and negative electrode materials to achieve an optimum battery voltage. The theoretical calculations of the structure, intercalation voltage and diffusion path can be very useful for evaluating the materials and for comparison with the experimental results of the magnesium batteries which are not hassle-free.


2021 ◽  
pp. 17-26
Author(s):  
Mohd Sadiq ◽  
Mohammad Moeen Hasan Raza ◽  
Mohammad Zulfequar ◽  
Mahboob Ali ◽  
Javid Ali

2021 ◽  
Vol 515 ◽  
pp. 230643
Author(s):  
Tianjiang Sun ◽  
Haihui Du ◽  
Shibing Zheng ◽  
Zhanliang Tao

Author(s):  
Zhenzhen Liu ◽  
Xiang Li ◽  
Jian He ◽  
Qian Wang ◽  
Ding Zhu ◽  
...  

2021 ◽  
pp. 139738
Author(s):  
Saul Rubio ◽  
Ziteng Liang ◽  
Yixiao Li ◽  
Wenhua Zuo ◽  
Pedro Lavela ◽  
...  

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