Atomically thin black phosphorus (called phosphorene) holds great promise as an alternative to graphene and other two-dimensional transition-metal dichalcogenides as an anode material for lithium-ion batteries (LIBs). However, bulk black phosphorus (BP) suffers from rapid capacity fading and poor rechargeable performance. This work reports for the first time the use of in situ transmission electron microscopy (TEM) to construct nanoscale phosphorene LIBs. This enables direct visualization of the mechanisms underlying capacity fading in thick multilayer phosphorene through real-time capture of delithiation-induced structural decomposition, which serves to reduce electrical conductivity thus causing irreversibility of the lithiated phases. We...
Few-layer phosphorene (FLP) has attracted strong research interest due to its extraordinary physical...
Holey phosphorene, a novel type of nano-black phosphorus, has been theoretically predicted to have p...
Bidimensional (2D) materials are nowadays being developed as outstanding candidates for electronic a...
The increasing demand of clean and sustainable energy drives the development of energy storage devic...
The liquid-phase exfoliation (LPE) of black phosphorus (BP) is a strategic route for the large-scale...
Discovering stabilizers that protect phosphorene from oxidative degradation is critically required f...
Discovering stabilizers that protect phosphorene from oxidative degradation is critically required f...
Few-layer black phosphorus (BP) nano-sheets that are clean and of high quality, are efficiently prod...
The capacity and stability of the constituent electrodes critically determine the performance of Li-...
Discovering stabilizers that protect phosphorene from oxidative degradation is critically required f...
With the rapid development of modern society, the huge demand for energy storage systems from fossil...
Density functional theory calculations (DFT), including van der Waals interactions, have been carrie...
To bridge the gap between laboratory research and commercial applications, it is vital to develop sc...
To bridge the gap between laboratory research and commercial applications, it is vital to develop sc...
To bridge the gap between laboratory research and commercial applications, it is vital to develop sc...
Few-layer phosphorene (FLP) has attracted strong research interest due to its extraordinary physical...
Holey phosphorene, a novel type of nano-black phosphorus, has been theoretically predicted to have p...
Bidimensional (2D) materials are nowadays being developed as outstanding candidates for electronic a...
The increasing demand of clean and sustainable energy drives the development of energy storage devic...
The liquid-phase exfoliation (LPE) of black phosphorus (BP) is a strategic route for the large-scale...
Discovering stabilizers that protect phosphorene from oxidative degradation is critically required f...
Discovering stabilizers that protect phosphorene from oxidative degradation is critically required f...
Few-layer black phosphorus (BP) nano-sheets that are clean and of high quality, are efficiently prod...
The capacity and stability of the constituent electrodes critically determine the performance of Li-...
Discovering stabilizers that protect phosphorene from oxidative degradation is critically required f...
With the rapid development of modern society, the huge demand for energy storage systems from fossil...
Density functional theory calculations (DFT), including van der Waals interactions, have been carrie...
To bridge the gap between laboratory research and commercial applications, it is vital to develop sc...
To bridge the gap between laboratory research and commercial applications, it is vital to develop sc...
To bridge the gap between laboratory research and commercial applications, it is vital to develop sc...
Few-layer phosphorene (FLP) has attracted strong research interest due to its extraordinary physical...
Holey phosphorene, a novel type of nano-black phosphorus, has been theoretically predicted to have p...
Bidimensional (2D) materials are nowadays being developed as outstanding candidates for electronic a...