Multivalent ion batteries (MVIBs) provide an inexpensive and energy-dense alternative to Li-ion batteries when portability of the battery is not of primary concern. However, it is difficult to find cathode materials that provide optimal battery characteristics such as energy density, adequate charge/discharge rates, and cyclability when paired with a multivalent ion. To address this, we investigate six MnO<sub>2</sub> polymorphs as cathodes for MVIBs using density functional theory calculations. We find voltages as high as 3.7, 2.4, 2.7, 1.8, and 1.0 V for Li, Mg, Ca, Al, and Zn, respectively, and calculate the volume change due to intercalation. We then focus specifically on Ca and compute the energy barriers which are associated with the ...
The rapidly expanding field of nonaqueous multivalent intercalation batteries offers a promising way...
Despite tremendous efforts denoted to magnesium battery research, the realization of magnesium batte...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Multivalent ion batteries (MVIBs) provide economical and energy-dense alternatives to Li-ion batteri...
Batteries based on multivalent ion (such as Al3+, Ca2+, and Mg2+) intercalation materials have attra...
Transition metal oxides are the primary choice for cathode materials in lithium ion batteries. These...
Batteries that shuttle multivalent ions such as Mg[superscript 2+] and Ca[superscript 2+] ions are p...
The scarce inventory of compounds that allow for diffusion of multivalent cations at reasonable rate...
Batteries that shuttle multivalent ions such as Mg2+ and Ca2+ ions are promising candidates for achi...
Manganese oxide materials are attracting considerable interest for clean energy storage applications...
It is obvious to harness the intermittent renewable energy resources, energy storage applications, s...
ABSTRACT: Manganese oxide materials are attracting considerable interest for clean energy storage ap...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Multivalent batteries are an energy storage technology with the potential to surpass lithium-ion bat...
The need for sustainable, economical, and high energy density rechargeable batteries are mandatory t...
The rapidly expanding field of nonaqueous multivalent intercalation batteries offers a promising way...
Despite tremendous efforts denoted to magnesium battery research, the realization of magnesium batte...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Multivalent ion batteries (MVIBs) provide economical and energy-dense alternatives to Li-ion batteri...
Batteries based on multivalent ion (such as Al3+, Ca2+, and Mg2+) intercalation materials have attra...
Transition metal oxides are the primary choice for cathode materials in lithium ion batteries. These...
Batteries that shuttle multivalent ions such as Mg[superscript 2+] and Ca[superscript 2+] ions are p...
The scarce inventory of compounds that allow for diffusion of multivalent cations at reasonable rate...
Batteries that shuttle multivalent ions such as Mg2+ and Ca2+ ions are promising candidates for achi...
Manganese oxide materials are attracting considerable interest for clean energy storage applications...
It is obvious to harness the intermittent renewable energy resources, energy storage applications, s...
ABSTRACT: Manganese oxide materials are attracting considerable interest for clean energy storage ap...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...
Multivalent batteries are an energy storage technology with the potential to surpass lithium-ion bat...
The need for sustainable, economical, and high energy density rechargeable batteries are mandatory t...
The rapidly expanding field of nonaqueous multivalent intercalation batteries offers a promising way...
Despite tremendous efforts denoted to magnesium battery research, the realization of magnesium batte...
Sodium-ion batteries (SIBs) can develop cost-effective and safe energy storage technology for substa...