Non-aqueous Mg-ion batteries offer a promising way to overcome safety, costs, and energy density limitations of state-of-the-art Li-ion battery technology. We present a rigorous analysis of the magnesium aluminum chloride complex (MACC) in tetrahydrofuran (THF), one of the few electrolytes that can reversibly plate and strip Mg. We use ab initio calculations and classical molecular dynamics simulations to interrogate the MACC electrolyte composition with the goal of addressing two urgent questions that have puzzled battery researchers: (i) the functional species of the electrolyte, and (ii) the complex equilibria regulating the MACC speciation after prolonged electrochemical cycling, a process termed as conditioning, and after prolonged ina...
We describe in this work Mg electrodeposition and dissolution from a wide range of inorganic etherea...
In this work we uncover a novel effect between concentration dependent ion pair formation and anion ...
Rational design of novel electrolytes with enhanced functionality requires fundamental molecular-lev...
Non-aqueous Mg-ion batteries offer a promising way to overcome safety, costs, and energy density lim...
DFT calculations were conducted to provide insightful and unprecedented thermodynamic insights on te...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
Mg batteries are an attractive alternative to Li-based energy storage due to the possibility of high...
Mg batteries are an attractive alternative to Li-based energy storage due to the possibility of high...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
A critical roadblock toward practical Mg-based energy storage technologies is the lack of reversible...
Mg batteries are attractive next-generation energy storage systems due to their high natural abundan...
In many Mg-based battery systems, the reversibility of Mg deposition and dissolution is lowered by p...
The knowledge of Mg solvation structure in the electrolyte is requisite to understand the transport ...
Magnesium batteries are currently attracting a lot of interest as a next generation battery technolo...
We present a multinuclear nuclear magnetic resonance (NMR) and density functional theory (DFT) study...
We describe in this work Mg electrodeposition and dissolution from a wide range of inorganic etherea...
In this work we uncover a novel effect between concentration dependent ion pair formation and anion ...
Rational design of novel electrolytes with enhanced functionality requires fundamental molecular-lev...
Non-aqueous Mg-ion batteries offer a promising way to overcome safety, costs, and energy density lim...
DFT calculations were conducted to provide insightful and unprecedented thermodynamic insights on te...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
Mg batteries are an attractive alternative to Li-based energy storage due to the possibility of high...
Mg batteries are an attractive alternative to Li-based energy storage due to the possibility of high...
Multivalent (MV) battery architectures based on pairing a Mg metal anode with a high-voltage (∼3 V) ...
A critical roadblock toward practical Mg-based energy storage technologies is the lack of reversible...
Mg batteries are attractive next-generation energy storage systems due to their high natural abundan...
In many Mg-based battery systems, the reversibility of Mg deposition and dissolution is lowered by p...
The knowledge of Mg solvation structure in the electrolyte is requisite to understand the transport ...
Magnesium batteries are currently attracting a lot of interest as a next generation battery technolo...
We present a multinuclear nuclear magnetic resonance (NMR) and density functional theory (DFT) study...
We describe in this work Mg electrodeposition and dissolution from a wide range of inorganic etherea...
In this work we uncover a novel effect between concentration dependent ion pair formation and anion ...
Rational design of novel electrolytes with enhanced functionality requires fundamental molecular-lev...