Reserved for Miklós Nemesszeghy
Introduction
Rechargeable Al-ion based batteries are considered promising future electrochemical energy storage devices. As a high valence ion (+III specifically), Al-ion utilizing batteries have a potential for high energy density and capacity as each oxidation/reduction reaction transfers multiple electrons per atom/ion
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. In addition, Al is the most abundant metal in Earth's crust
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, is not harmful to the environment and the relatively small ionic radii of Al
3+-ion (53 pm) is promising for intercalation chemistries
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. Some studies on Al-ion batteries were published already back in the 1900s, but large interest in the subject has emerged only recently (around 2015) to replace Li-ion batteries
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A typical Al-ion battery has aluminium metal foil as the negative electrode, a chloride based ionic liquid as electrolyte, and a positive electrode, supporting Al-ion intercalation. Al-ions are transported between electrodes in the electrolyte as AlCl4-- and Al2Cl7--ions. During discharge, the Al-ions intercalate into the positive electrode, while during charge, the Al-ions are plated onto the Al negative electrode.
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citeID | 10.1002/aenm.202002151 |
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Figure 1 shows the working mechanism of such a Al-ion battery. With the difference of intercalation versus plating, the oxidization/reduction reactions at the electrodes are
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:
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{\text{Al}+7\text{Al}\text{Cl}_4^-\left(+3\text{Cl}^-\right)\leftrightarrow4\text{Al}_2\text{Cl}_7^-+3\text{e}^-.} |
There are also numerous other working mechanisms of Al-ion based batteries, emerging from different electrode and electrolyte configurations. It should also be noted that Al-ion based batteries also include the so called Al dual-ion batteries. In dual-ion batteries cation as well as anion intercalation, or deintercalation, happens simultaneously
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citeID | 10.1002/adfm.202010958 |
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. Al dual-ion batteries are meant to increase the capacity, operating voltage and reduce the cost of Al-ion based batteries
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citeID | 10.1016/j.ensm.2017.10.001 |
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