High-rate lithium (Li) ion batteries that can be charged in minutes and store enough energy for a 350-mile driving range are highly desired for all-electric vehicles. A high charging rate usually leads to sacrifices in capacity and cycling stability. We report use of black phosphorus (BP) as the active anode for high-rate, high-capacity Li storage. The formation of covalent bonds with graphitic carbon restrains edge reconstruction in layered BP particles to ensure open edges for fast Li+ entry; the coating of the covalently bonded BP-graphite particles with electrolyte-swollen polyaniline yields a stable solid– electrolyte interphase and inhibits the continuous growth of poorly conducting Li fluorides and carbonates to ensure efficient Li+ ...
The reaction kinetics of electrochemical lithiation/delithiation in a composite consisting of black ...
Black phosphorus (BP) has received increasing research attention as an anode material in sodium-ion ...
With the expected theoretical capacity of 2596 mA h g-1, phosphorus is considered to be the highest ...
High specific capacity battery electrode materials have attracted great research attention. Phosphor...
High specific capacity battery electrode materials have attracted great research attention. Phosphor...
In recent times, few-layer black phosphorus (BP) has attracted tremendous attention as a promising a...
Black phosphorus (BP) is a desirable anode material for alkali metal ion storage owing to its high e...
In recent times, few-layer black phosphorus (BP) has attracted tremendous attention as a promising a...
Phosphorus has recently received extensive attention as a promising anode for lithium ion batteries ...
Phosphorus-rich CuP<sub>2</sub> and its carbon composites have been investigated as an anode materia...
The increasing demand of clean and sustainable energy drives the development of energy storage devic...
Due to high capacity, moderate redox voltage, and relatively low polarization, metal phosphides (MPs...
<p>Black phosphorus (BP) has received increasing research attention as an anode material in sodium-i...
Deficiencies of cathode materials severely limit cycling performance and discharge rates of Li batte...
Due to high capacity, moderate redox voltage, and relatively low polarization, metal phosphides (MPs...
The reaction kinetics of electrochemical lithiation/delithiation in a composite consisting of black ...
Black phosphorus (BP) has received increasing research attention as an anode material in sodium-ion ...
With the expected theoretical capacity of 2596 mA h g-1, phosphorus is considered to be the highest ...
High specific capacity battery electrode materials have attracted great research attention. Phosphor...
High specific capacity battery electrode materials have attracted great research attention. Phosphor...
In recent times, few-layer black phosphorus (BP) has attracted tremendous attention as a promising a...
Black phosphorus (BP) is a desirable anode material for alkali metal ion storage owing to its high e...
In recent times, few-layer black phosphorus (BP) has attracted tremendous attention as a promising a...
Phosphorus has recently received extensive attention as a promising anode for lithium ion batteries ...
Phosphorus-rich CuP<sub>2</sub> and its carbon composites have been investigated as an anode materia...
The increasing demand of clean and sustainable energy drives the development of energy storage devic...
Due to high capacity, moderate redox voltage, and relatively low polarization, metal phosphides (MPs...
<p>Black phosphorus (BP) has received increasing research attention as an anode material in sodium-i...
Deficiencies of cathode materials severely limit cycling performance and discharge rates of Li batte...
Due to high capacity, moderate redox voltage, and relatively low polarization, metal phosphides (MPs...
The reaction kinetics of electrochemical lithiation/delithiation in a composite consisting of black ...
Black phosphorus (BP) has received increasing research attention as an anode material in sodium-ion ...
With the expected theoretical capacity of 2596 mA h g-1, phosphorus is considered to be the highest ...