Magnesium batteries: Current state of the art, issues and future perspectives

Rana Mohtadi and Fuminori Mizuno
Beilstein J. Nanotechnol. 2014, 5, 1291–1311. https://doi.org/10.3762/bjnano.5.143

Cite the Following Article

Magnesium batteries: Current state of the art, issues and future perspectives
Rana Mohtadi and Fuminori Mizuno
Beilstein J. Nanotechnol. 2014, 5, 1291–1311. https://doi.org/10.3762/bjnano.5.143

How to Cite

Mohtadi, R.; Mizuno, F. Beilstein J. Nanotechnol. 2014, 5, 1291–1311. doi:10.3762/bjnano.5.143

Download Citation

Citation data can be downloaded as file using the "Download" button or used for copy/paste from the text window below.
Citation data in RIS format can be imported by all major citation management software, including EndNote, ProCite, RefWorks, and Zotero.

Citations to This Article

Up to 20 of the most recent references are displayed here.

Scholarly Works

  • Wang, L.; Ng, A.; Family, R.; Detsi, E.; Pikul, J. Liquid eutectic gallium–indium as a magnesium-ion battery anode with ultralong cycle life enabled by liquid–solid phase transformation during (de)magnesiation at room temperature. Journal of Materials Chemistry A 2024, 12, 27435–27442. doi:10.1039/d4ta03740e
  • Idrissi, S.; Jabar, A.; Bahmad, L. Study of the Physical Properties of the New Spinel Oxide NaMgMn₂O₄ Material. Journal of Inorganic and Organometallic Polymers and Materials 2024. doi:10.1007/s10904-024-03436-2
  • Radi, M.; Purkait, T.; Tchitchekova, D. S.; Goñi, A. R.; Markowski, R.; Bodin, C.; Courrèges, C.; Dedryvère, R.; Ponrouch, A. A Comprehensive Study on the Parameters Affecting Magnesium Plating/Stripping Kinetics in Rechargeable Mg Batteries. Advanced Energy Materials 2024. doi:10.1002/aenm.202401587
  • KOBAYASHI, H. Development of Oxide-Type Cathode Materials towards Room-Temperature Magnesium Rechargeable Batteries. Electrochemistry 2024, 92, 101004. doi:10.5796/electrochemistry.24-00068
  • Sun, Y.; Pan, M.; Wang, Y.; Hu, A.; Zhou, Q.; Zhang, D.; Zhang, S.; Zhao, Y.; Wang, Y.; Chen, S.; Zhou, M.; Chen, Y.; Yang, J.; Wang, n.; NuLi, Y. A Facile Strategy for Constructing High-Performance Polymer Electrolytes via Anion Modification and Click Chemistry for Rechargeable Magnesium Batteries. Angewandte Chemie (International ed. in English) 2024, 63, e202406585. doi:10.1002/anie.202406585
  • Sun, Y.; Pan, M.; Wang, Y.; Hu, A.; Zhou, Q.; Zhang, D.; Zhang, S.; Zhao, Y.; Wang, Y.; Chen, S.; Zhou, M.; Chen, Y.; Yang, J.; Wang, n.; NuLi, Y. A Facile Strategy for Constructing High‐Performance Polymer Electrolytes via Anion Modification and Click Chemistry for Rechargeable Magnesium Batteries. Angewandte Chemie 2024, 136. doi:10.1002/ange.202406585
  • Tolstopyatova, E. G.; Salnikova, Y. D.; Holze, R.; Kondratiev, V. V. Progress and Challenges of Vanadium Oxide Cathodes for Rechargeable Magnesium Batteries. Molecules (Basel, Switzerland) 2024, 29, 3349. doi:10.3390/molecules29143349
  • Vadthya, R.; Y, V. N. K.; Jetti, V. R. Advances in ionic-liquid-based eutectic electrolyte for high voltage rechargeable magnesium batteries. Ionics 2024, 30, 6037–6046. doi:10.1007/s11581-024-05699-8
  • Massaro, A.; Fasulo, F.; Langella, A.; Muñoz-Garcia, A. B.; Pavone, M. Ab Initio Modeling of Layered Oxide High-Energy Cathodes for Na-Ion Batteries. Topics in Applied Physics; Springer International Publishing, 2024; pp 367–401. doi:10.1007/978-3-031-47303-6_13
  • Ivanov, S. Corrosion of Current Collectors in Metal-Ion Batteries. Corrosion and Degradation in Fuel Cells, Supercapacitors and Batteries; Springer Nature Switzerland, 2024; pp 251–288. doi:10.1007/978-3-031-57012-4_11
  • Chai, X.; Xie, H.; Zhang, T.-T.; Xin, Y.; Zhang, F.; He, B.; Xie, H.; Yu, L.; Tian, H. Ternary Mg alloy-based artificial interphase enables high-performance rechargeable magnesium batteries. Energy Storage Materials 2024, 70, 103460. doi:10.1016/j.ensm.2024.103460
  • Palacin, M. R.; Johansson, P.; Dominko, R.; Dlugatch, B.; Aurbach, D.; Li, Z.; Fichtner, M.; Lužanin, O.; Bitenc, J.; Wei, Z.; Glaser, C.; Janek, J.; Fernández-Barquín, A.; Mainar, A. R.; Leonet, O.; Urdampilleta, I.; Blázquez, J. A.; Tchitchekova, D. S.; Ponrouch, A.; Canepa, P.; Gautam, G. S.; Casilda, R. S. R. G.; Martinez-Cisneros, C. S.; Torres, N. U.; Varez, A.; Sanchez, J.-Y.; Kravchyk, K. V.; Kovalenko, M. V.; Teck, A. A.; Shiel, H.; Stephens, I. E. L.; Ryan, M. P.; Zemlyanushin, E.; Dsoke, S.; Grieco, R.; Patil, N.; Marcilla, R.; Gao, X.; Carmalt, C. J.; He, G.; Titirici, M.-M. Roadmap on multivalent batteries. Journal of Physics: Energy 2024, 6, 31501. doi:10.1088/2515-7655/ad34fc
  • Xu, Z.; Ruhlmann, L.; Lv, Y.; Gan, L.; Liu, M. Recent Progress on Cathode Materials for Rechargeable Zinc Ion Batteries. ChemNanoMat 2024, 10. doi:10.1002/cnma.202300615
  • Jeong, H.; Cheng, L. Intercalation mechanism of solvated magnesium electrolytes on spinel cathode surfaces. Journal of Power Sources 2024, 602, 234227. doi:10.1016/j.jpowsour.2024.234227
  • Hardin, N. Z.; Woodley, C. P.; McDonald, K. D.; Bartlett, B. M. Triiodide Anion as a Magnesium-ion Transporter for Low Overpotential Battery Cycling in Iodine-Containing Mg(TFSI)2 Electrolyte. ACS applied materials & interfaces 2024, 16, 14883–14889. doi:10.1021/acsami.4c00075
  • Hidalgo, M. Á.; Lavela, P.; Tirado, J. L.; Aranda, M. Modification of Layered Cathodes of Sodium-Ion Batteries with Conducting Polymers. Batteries 2024, 10, 93. doi:10.3390/batteries10030093
  • Dimogiannis, K.; Sankowski, A.; Holc, C.; Parmenter, C. D.; Newton, G. N.; Walsh, D. A.; O'Shea, J.; Khlobystov, A. N.; Johnson, L. R. Structure and chemical composition of the Mg electrode during cycling in a simple glyme electrolyte. Energy Storage Materials 2024, 67, 103280. doi:10.1016/j.ensm.2024.103280
  • Song, X.; Ge, Y.; Xu, H.; Bao, S.; Wang, L.; Xue, X.; Yu, Q.; Xing, Y.; Wu, Z.; Xie, K.; Zhu, T.; Zhang, P.; Liu, Y.; Wang, Z.; Tie, Z.; Ma, J.; Jin, Z. Ternary Eutectic Electrolyte-Assisted Formation and Dynamic Breathing Effect of the Solid-Electrolyte Interphase for High-Stability Aqueous Magnesium-Ion Full Batteries. Journal of the American Chemical Society 2024, 146, 7018–7028. doi:10.1021/jacs.4c00227
  • Tsurumaki, A.; Brutti, S.; Greco, G.; Navarra, M. A. Closed Battery Systems. The Materials Research Society Series; Springer International Publishing, 2024; pp 173–211. doi:10.1007/978-3-031-48359-2_10
  • Luo, L.; Yang, X.; Gao, Z.; Li, X.; Xu, J.; Zhang, Y.; Deng, R.; Huang, G.; Wang, J.; Pan, F. Overcoming passivation in rechargeable magnesium batteries: Artificial solid-electrolyte interface for enhanced anode functionality. Electrochimica Acta 2024, 478, 143815. doi:10.1016/j.electacta.2024.143815

Patents

  • MIZUNO FUMINORI; MOHTADI RANA; TUTUSAUS OSCAR; SINGH NIKHILENDRA; ARTHUR TIMOTHY S; YANG RUIDONG; TAKECHI KENSUKE; LING CHEN; ZHANG RUIGANG. 3D magnesium battery and method of making the same. US 11777135 B2, Oct 3, 2023.
  • MOHTADI RANA; TUTUSAUS OSCAR; MACFARLANE DOUGLAS R; KAR MEGA. Preparation of ionic liquids based on boron clusters. US 11557788 B2, Jan 17, 2023.
  • BAN CHUNMEI; SON SEOUNG-BUM. Magnesium metal devices and methods of making the same. US 10930928 B2, Feb 23, 2021.
  • MOHTADI RANA; TUTUSAUS OSCAR. High concentration electrolyte for magnesium battery having carboranyl magnesium salt in mixed ether solvent. US 10910672 B2, Feb 2, 2021.
  • BUTTRY DANIEL A; WATKINS TYLAN S; RHEINHARDT JOSEPH. Chelating ionic liquids for magnesium battery electrolytes and systems. US 10700382 B2, June 30, 2020.
  • MIZUNO FUMINORI; MOHTADI RANA; TUTUSAUS OSCAR; SINGH NIKHILENDRA; ARTHUR TIMOTHY S; YANG RUIDONG; TAKECHI KENSUKE; LING CHEN; ZHANG RUIGANG. 3D magnesium battery and method of making the same. US 10680280 B2, June 9, 2020.
  • MOHTADI RANA; TUTUSAUS OSCAR; MACFARLANE DOUGLAS R; KAR MEGA. Electrochemical cells having ionic liquid-containing electrolytes. US 10673095 B2, June 2, 2020.
  • LAMAKA SVIATLANA; HÖCHE DANIEL; ZHELUDKEVICH MIKHAIL. Electrolyte additives for magnesium air batteries. US 10637117 B2, April 28, 2020.
  • VAUGHEY JOHN T; SA NIYA; WANG HAO; KEY BARIS. Halogen-free electrolytes for magnesium batteries. US 10593996 B2, March 17, 2020.
  • LAVALLO VINCENT; EL HELLANI AHMAD; CHAN ALLEN. Catalyst and battery components derived from condensation reactions with carba-closo-dodecaborate amines. US 9994595 B2, June 12, 2018.
  • HÖCHE DANIEL; LAMAKA SVIATLANA; ZHELUDKEVICH MIKHAIL L. ELECTROLYTE ADDITIVES FOR MAGNESIUM AIR BATTERIES. EP 3291361 A1, March 7, 2018.
  • SCHWARZ RAINER; WACHTLER MARIO. MG-COORDINATION COMPOUNDS FOR USE IN AN ELECTROLYTE FOR AN ELECTROCHEMICAL CELL. WO 2017121591 A1, July 20, 2017.
  • BURRELL ANTHONY K; SA NIYA; PROFFIT DANIELLE LEE; LIPSON ALBERT; LIAO CHEN; VAUGHEY JOHN T; INGRAM BRIAN J. Electrolytes for magnesium electrochemical cells. US 9698448 B2, July 4, 2017.
  • HINTENNACH ANDREAS. Elektrolyt für eine Magnesium-Batteriezelle und wiederaufladbare Magnesium-Batteriezelle mit dem Elektrolyt. DE 102016010958 A1, March 30, 2017.
Other Beilstein-Institut Open Science Activities