TY - JOUR
T1 - Materials challenges for aluminum ion based aqueous energy storage devices
T2 - Progress and prospects
AU - Zheng, Xiao
AU - Han, Cuiping
AU - Lee, Chun-Sing
AU - Yao, Wenjiao
AU - Zhi, Chunyi
AU - Tang, Yongbing
PY - 2024/6
Y1 - 2024/6
N2 - Due to the shortage of lithium resources, current lithium-ion batteries are difficult to meet the growing demand for energy storage in the long run. Rechargeable aqueous aluminum ion (Al3+) electrochemistry has the advantages of abundant resources, high safety, environmental friendliness, and high energy/power density. It is, therefore an ideal choice for alternative energy storage devices. However, Al3+-based technology is still in the preliminary stage, and there are various challenges. In reality, its kinetics and reversibility have long been disturbed by the strong electrostatic field of Al3+ and the parasitic side reactions of aqueous electrolytes. This paper first summarizes the history of aqueous aluminum ion batteries/capacitors (AAIBs/AAICs) and analyzes the challenges faced by cathode, anode, and electrolyte. Then, the state-of-the-art research progress, design strategies, and limitations of the cathode, anode, electrolyte, and Al3+-based energy storage devices are comprehensively introduced, and their structure, performance, and reaction mechanisms are discussed. Finally, the future design of AAIBs/AAICs with long life, high reversibility, and high energy/power density has been prospected, and promising research directions are pointed out. © 2024 Elsevier Ltd
AB - Due to the shortage of lithium resources, current lithium-ion batteries are difficult to meet the growing demand for energy storage in the long run. Rechargeable aqueous aluminum ion (Al3+) electrochemistry has the advantages of abundant resources, high safety, environmental friendliness, and high energy/power density. It is, therefore an ideal choice for alternative energy storage devices. However, Al3+-based technology is still in the preliminary stage, and there are various challenges. In reality, its kinetics and reversibility have long been disturbed by the strong electrostatic field of Al3+ and the parasitic side reactions of aqueous electrolytes. This paper first summarizes the history of aqueous aluminum ion batteries/capacitors (AAIBs/AAICs) and analyzes the challenges faced by cathode, anode, and electrolyte. Then, the state-of-the-art research progress, design strategies, and limitations of the cathode, anode, electrolyte, and Al3+-based energy storage devices are comprehensively introduced, and their structure, performance, and reaction mechanisms are discussed. Finally, the future design of AAIBs/AAICs with long life, high reversibility, and high energy/power density has been prospected, and promising research directions are pointed out. © 2024 Elsevier Ltd
KW - Anode materials
KW - Aqueous aluminum ion batteries
KW - Aqueous aluminum ion capacitors
KW - Cathode materials
KW - Electrolytes
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UR - https://www.scopus.com/record/pubmetrics.uri?eid=2-s2.0-85185887971&origin=recordpage
U2 - 10.1016/j.pmatsci.2024.101253
DO - 10.1016/j.pmatsci.2024.101253
M3 - RGC 21 - Publication in refereed journal
SN - 0079-6425
VL - 143
JO - Progress in Materials Science
JF - Progress in Materials Science
M1 - 101253
ER -