Graphene based hybrid electrode material is fabricated from an easy and simple chemical method and is demonstrated as a cathode material for Li rechargeable batteries with high capacity and excellent rate capability. The hybrid material delivers a specific capacity of 156 mAh g(-1) at a current rate of 25 mA g(-1) (0.125 C) after 100 cycles with coulombic efficiency of nearly 100%. At elevated current rates, the specific capacity of the hybrid material is over 100 mAh g(-1) even at a current rate of 2500 mA g(-1) (similar to 12.5 C). The excellent battery performance of the hybrid material is attributed to the easy Li ion and electron transport in the amorphous FePO(4)/graphene hybrid structure, in which electrochemically active amorphous F...
We report a general strategy for the fabrication of freestanding sandwich-like graphene-based hybrid...
A sponge-like Li4Ti5O12/graphene composite was prepared via sequential hydrothermal process and soli...
In this work, we investigated three types of graphene (i.e., home-made G, G V4, and G V20) with diff...
The application of lithium ion batteries in high power applications such as hybrid electric vehicles...
We report a facile method to prepare nanoarchitectured metal oxides/graphene hybrids as both positiv...
We synthesized a novel 2D hybrid material composed of Li2FeSiO4 nanorods (LFSNRs) anchored on graphe...
Tailor-designed cathode materials are essential for Li-ion batteries with both high energy density a...
Today, one of the major challenges is to provide green and powerful energy sources for a cleaner env...
A composite of modified graphene and LiFePO4 has been developed to improve the speed of charging-dis...
A graphene encapsulated LiFePO4 composite has been synthesized by self-assembly of surface modified ...
A Co3O4/graphene hybrid material was fabricated using a simple in situ reduction process and demonst...
Resumen del trabajo presentado a la International Graphene Innovation Conference, celebrada en Qingd...
Stepping into the 21st century, “graphene fever” swept the world due to the discovery of graphene, m...
Improvements in lithium (Li)-ion battery technology can be achieved by developing novel, high-perfor...
A highly efficient and continuous high-pressure homogenization (HPH) approach is developed for scala...
We report a general strategy for the fabrication of freestanding sandwich-like graphene-based hybrid...
A sponge-like Li4Ti5O12/graphene composite was prepared via sequential hydrothermal process and soli...
In this work, we investigated three types of graphene (i.e., home-made G, G V4, and G V20) with diff...
The application of lithium ion batteries in high power applications such as hybrid electric vehicles...
We report a facile method to prepare nanoarchitectured metal oxides/graphene hybrids as both positiv...
We synthesized a novel 2D hybrid material composed of Li2FeSiO4 nanorods (LFSNRs) anchored on graphe...
Tailor-designed cathode materials are essential for Li-ion batteries with both high energy density a...
Today, one of the major challenges is to provide green and powerful energy sources for a cleaner env...
A composite of modified graphene and LiFePO4 has been developed to improve the speed of charging-dis...
A graphene encapsulated LiFePO4 composite has been synthesized by self-assembly of surface modified ...
A Co3O4/graphene hybrid material was fabricated using a simple in situ reduction process and demonst...
Resumen del trabajo presentado a la International Graphene Innovation Conference, celebrada en Qingd...
Stepping into the 21st century, “graphene fever” swept the world due to the discovery of graphene, m...
Improvements in lithium (Li)-ion battery technology can be achieved by developing novel, high-perfor...
A highly efficient and continuous high-pressure homogenization (HPH) approach is developed for scala...
We report a general strategy for the fabrication of freestanding sandwich-like graphene-based hybrid...
A sponge-like Li4Ti5O12/graphene composite was prepared via sequential hydrothermal process and soli...
In this work, we investigated three types of graphene (i.e., home-made G, G V4, and G V20) with diff...