Abstract The two major limitations in the application of SnO2 for lithium-ion battery (LIB) anodes are the large volume variations of SnO2 during repeated lithiation/delithiation processes and a large irreversible capacity loss during the first cycle, which can lead to a rapid capacity fade and unsatisfactory initial Coulombic efficiency (ICE). To overcome these limitations, we developed composites of ultrafine SnO2 nanoparticles and in situ formed Co(CoSn) nanocrystals embedded in an N-doped carbon matrix using a Co-based metal–organic framework (ZIF-67). The formed Co additives and structural advantages of the carbon-confined SnO2/Co nanocomposite effectively inhibited Sn coarsening in the lithiated SnO2 and mitigated its structural degra...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
In search of higher capacity anodes for secondary Li-ion cells, it has been observed that active wit...
Li-ion batteries (LIBs) have been widely employed in a myriad of portable electronics and gained gre...
The two major limitations in the application of SnO2 for lithium-ion battery (LIB) anodes are the la...
The coupling between electrochemically active material and conductive matrix is vitally important fo...
Abstract Ultrafine SnO2/Sn nanoparticles encapsulated into the adjustable mesoporous carbon matrix h...
The coupling between electrochemically active material and conductive matrix is vitally important fo...
To overcome the low conductivity and large volume variation of metal oxide anodes, the electrode mic...
To overcome the low conductivity and large volume variation of metal oxide anodes, the electrode mic...
We employed a glucose mediated hydrothermal self-assembly method to create a SnO2-carbon nanocomposi...
To design an easily manufactured, large energy density, highly reversible, and fast rate-capable Li-...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
In search of higher capacity anodes for secondary Li-ion cells, it has been observed that active wit...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
We explore a hybrid material consisting of SnO nanoparticles (NPs) embedded in the porous shells of ...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
In search of higher capacity anodes for secondary Li-ion cells, it has been observed that active wit...
Li-ion batteries (LIBs) have been widely employed in a myriad of portable electronics and gained gre...
The two major limitations in the application of SnO2 for lithium-ion battery (LIB) anodes are the la...
The coupling between electrochemically active material and conductive matrix is vitally important fo...
Abstract Ultrafine SnO2/Sn nanoparticles encapsulated into the adjustable mesoporous carbon matrix h...
The coupling between electrochemically active material and conductive matrix is vitally important fo...
To overcome the low conductivity and large volume variation of metal oxide anodes, the electrode mic...
To overcome the low conductivity and large volume variation of metal oxide anodes, the electrode mic...
We employed a glucose mediated hydrothermal self-assembly method to create a SnO2-carbon nanocomposi...
To design an easily manufactured, large energy density, highly reversible, and fast rate-capable Li-...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
In search of higher capacity anodes for secondary Li-ion cells, it has been observed that active wit...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
We explore a hybrid material consisting of SnO nanoparticles (NPs) embedded in the porous shells of ...
In the recent years, the massive spreading of electric devices led the research to focus on high ene...
In search of higher capacity anodes for secondary Li-ion cells, it has been observed that active wit...
Li-ion batteries (LIBs) have been widely employed in a myriad of portable electronics and gained gre...