We report a new solution deposition method to synthesize an unprecedented type of two-dimensional ordered mesoporous carbon nanosheets via a controlled low-concentration monomicelle close-packing assembly approach. These obtained carbon nanosheets possess only one layer of ordered mesopores on the surface of a substrate, typically the inner walls of anodic aluminum oxide pore channels, and can be further converted into mesoporous graphene nanosheets by carbonization. The atomically flat graphene layers with mesopores provide high surface area for lithium ion adsorption and intercalation, while the ordered mesopores perpendicular to the graphene layer enable efficient ion transport as well as volume expansion flexibility, thus representing a...
Carbon‑carbon allotropic hybrids exhibit remarkable properties, including exceptional electrochemica...
A sandwich-like, graphene-based porous nitrogen-doped carbon (PNCs@Gr) has been prepared through fac...
Metal oxides (MOs) have been widely investigated as promising high-capacity anode material for lithi...
We report a new solution deposition method to synthesize an unprecedented type of two-dimensional or...
Two-dimensional (2D) porous graphitic carbon nanosheets (PGC nanosheets) as a high-rate anode materi...
A facile and scalable 2D spatial confinement strategy is developed for <i>in situ</i> synthesizing h...
Porous carbon microsheet anodes with Li-ion storage capacity exceeding the theoretical limit are for...
A novel two-dimensional porous sandwich-like Si/carbon nanosheet is designed and successfully fabric...
Although two-dimensional (2D) carbon materials are widely investigated, a well-defined 2D carbon nan...
In this study, a simple and reproducible synthesis strategy was developed to fabricate mesoporous ca...
A flexible one-pot strategy for fabricating a 3D network of nitrogen-doped (N-doped) carbon ultrathi...
Hard carbon has emerged as a candidate for anode material because of its abundant resources and larg...
Hollow nanostructures afford intriguing structural features ranging from large surface area and full...
Three-dimensionally ordered mesoporous carbons (3DOmCs) with pore sizes in the range of 10-40 nm are...
Although lithium ion batteries (LIBs) hold great promise as a next generation power supply, the poor...
Carbon‑carbon allotropic hybrids exhibit remarkable properties, including exceptional electrochemica...
A sandwich-like, graphene-based porous nitrogen-doped carbon (PNCs@Gr) has been prepared through fac...
Metal oxides (MOs) have been widely investigated as promising high-capacity anode material for lithi...
We report a new solution deposition method to synthesize an unprecedented type of two-dimensional or...
Two-dimensional (2D) porous graphitic carbon nanosheets (PGC nanosheets) as a high-rate anode materi...
A facile and scalable 2D spatial confinement strategy is developed for <i>in situ</i> synthesizing h...
Porous carbon microsheet anodes with Li-ion storage capacity exceeding the theoretical limit are for...
A novel two-dimensional porous sandwich-like Si/carbon nanosheet is designed and successfully fabric...
Although two-dimensional (2D) carbon materials are widely investigated, a well-defined 2D carbon nan...
In this study, a simple and reproducible synthesis strategy was developed to fabricate mesoporous ca...
A flexible one-pot strategy for fabricating a 3D network of nitrogen-doped (N-doped) carbon ultrathi...
Hard carbon has emerged as a candidate for anode material because of its abundant resources and larg...
Hollow nanostructures afford intriguing structural features ranging from large surface area and full...
Three-dimensionally ordered mesoporous carbons (3DOmCs) with pore sizes in the range of 10-40 nm are...
Although lithium ion batteries (LIBs) hold great promise as a next generation power supply, the poor...
Carbon‑carbon allotropic hybrids exhibit remarkable properties, including exceptional electrochemica...
A sandwich-like, graphene-based porous nitrogen-doped carbon (PNCs@Gr) has been prepared through fac...
Metal oxides (MOs) have been widely investigated as promising high-capacity anode material for lithi...