Nanostructuring silicon (Si) and combining Si with carbon shells have been studied in recent Li-ion battery electrodes, yet it remains a grand challenge to overcome the low electrical conductivity and associated volume change of Si. Here, by first coating a mesoporous SiO<sub>2</sub> (meso-SiO<sub>2</sub>) onto carbon nanotube (CNT) networks and then converting it into a meso-Si layer covered by carbon, we obtained a freestanding, highly porous composite sponge electrode consisting of three-dimensionally interconnected sandwiched carbon-Si-CNT skeletons. In this hierarchical structure, the macropores among the sponge connect to mesopores in the meso-Si layer so that Li<sup>+</sup> diffusion is facilitated, whereas the underlying CNT network...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
The volume expansion of the silicon (Si) anode material is still a main bottle-neck problem limiting...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
Nanostructuring silicon (Si) and combining Si with carbon shells have been studied in recent Li-ion ...
Mesoporous carbon (m-C) has potential applications as porous electrodes for electrochemical energy s...
A novel two-dimensional porous sandwich-like Si/carbon nanosheet is designed and successfully fabric...
Increasing the energy storage capability of lithium-ion batteries necessitates maximization of their...
Increasing the energy storage capability of lithium-ion batteries necessitates maximization of their...
A mesostructured spinel Li4Ti5O12 (LTO)-carbon nanocomposite (denoted as Meso-LTO-C) with large (>15...
In spite of silicon has a superior theoretical capacity, the large volume expansion of Si anodes dur...
A unique hierarchical three dimensional (3D) flexible current collector, in which the vertically ali...
Spatial confinement of silicon (Si) within carbonaceous materials has been regarded as the typical s...
The enhancement of the electrical conductivity (EC) of a porous carbon is highly desirable in many a...
A mesostructured spinel Li4Ti5O12 (LTO)-carbon nanocomposite (denoted as Meso-LTO-C) with large (>15...
Highly porous, conductive Si-CNT sponge-like structures with a large areal mass loading are demonstr...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
The volume expansion of the silicon (Si) anode material is still a main bottle-neck problem limiting...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...
Nanostructuring silicon (Si) and combining Si with carbon shells have been studied in recent Li-ion ...
Mesoporous carbon (m-C) has potential applications as porous electrodes for electrochemical energy s...
A novel two-dimensional porous sandwich-like Si/carbon nanosheet is designed and successfully fabric...
Increasing the energy storage capability of lithium-ion batteries necessitates maximization of their...
Increasing the energy storage capability of lithium-ion batteries necessitates maximization of their...
A mesostructured spinel Li4Ti5O12 (LTO)-carbon nanocomposite (denoted as Meso-LTO-C) with large (>15...
In spite of silicon has a superior theoretical capacity, the large volume expansion of Si anodes dur...
A unique hierarchical three dimensional (3D) flexible current collector, in which the vertically ali...
Spatial confinement of silicon (Si) within carbonaceous materials has been regarded as the typical s...
The enhancement of the electrical conductivity (EC) of a porous carbon is highly desirable in many a...
A mesostructured spinel Li4Ti5O12 (LTO)-carbon nanocomposite (denoted as Meso-LTO-C) with large (>15...
Highly porous, conductive Si-CNT sponge-like structures with a large areal mass loading are demonstr...
An easy and scalable synthetic route was proposed for synthesis of a high-energy stable anode materi...
The volume expansion of the silicon (Si) anode material is still a main bottle-neck problem limiting...
Silicon/carbon composite materials were widely considered as the next generation and the most potent...