Carbon foams are among the existing electrode designs proposed for use in 3D Li-ion microbatteries. For such electrodes to find applications in practical microbatteries, however, their void sizes, specific surface areas and pore volumes need be optimized. This thesis concerns the synthesis of highly porous carbon foams and their multifunctional applications in 3D microbatteries. The carbon foams are derived from polymers that are obtained by polymerizing high internal phase water-in-oil emulsions (HIPEs). In general, the carbonization of the sulfonated polymers yielded hierarchically porous structures with void sizes ranging from 2 to 35 µm and a BET specific surface area as high as 630 m2 g-1. Thermogravimetric and spectroscopic evidence i...
Presented herein are a review of climate change, renewable energy, and the need for energy storage a...
The fabrication of self-standing porous carbon foam nanostructures for trapping sulfur in Lithium-Su...
The limitations of two-dimensional electrodes can be overcome by using three-dimensional materials h...
Carbon foams are among the existing electrode designs proposed for use in 3D Li-ion microbatteries. ...
A long-range graphitic ordering in carbon anodes is desirable since it facilitates Li+ transport wit...
14 pagesInternational audiencePorous carbon foams were prepared by pyrolysis of phenolic resin from ...
6 pagesInternational audiencePorous carbon foamswere prepared by pyrolysis of a phenolic resin by a ...
Amphiphilic reduced graphene oxide (rGO) is an efficient emulsifier for water-in-divinylbenzene (DVB...
Carbon foams were produced from composites of macroporous poly(divinylbenzene) (poly(DVB) and reduce...
Recently, due to the unique properties and structures such as large geometric surface area, electric...
Porous electrodes are considered attractive for potential use as 3D current collectors in Li-ion mic...
Abstract Nitrogen and oxygen co-doped hierarchical micro-mesoporous carbon foams has been synthesize...
Abstract Three‐dimensional porous carbon foam is fabricated by thermal pyrolysis of melamine foam an...
Macroporous carbon foams (Cfoams) were synthesized by the replication process from mesophase pitch p...
Biological fuel cells potentially offer efficient clean energy conversation from biomass to electric...
Presented herein are a review of climate change, renewable energy, and the need for energy storage a...
The fabrication of self-standing porous carbon foam nanostructures for trapping sulfur in Lithium-Su...
The limitations of two-dimensional electrodes can be overcome by using three-dimensional materials h...
Carbon foams are among the existing electrode designs proposed for use in 3D Li-ion microbatteries. ...
A long-range graphitic ordering in carbon anodes is desirable since it facilitates Li+ transport wit...
14 pagesInternational audiencePorous carbon foams were prepared by pyrolysis of phenolic resin from ...
6 pagesInternational audiencePorous carbon foamswere prepared by pyrolysis of a phenolic resin by a ...
Amphiphilic reduced graphene oxide (rGO) is an efficient emulsifier for water-in-divinylbenzene (DVB...
Carbon foams were produced from composites of macroporous poly(divinylbenzene) (poly(DVB) and reduce...
Recently, due to the unique properties and structures such as large geometric surface area, electric...
Porous electrodes are considered attractive for potential use as 3D current collectors in Li-ion mic...
Abstract Nitrogen and oxygen co-doped hierarchical micro-mesoporous carbon foams has been synthesize...
Abstract Three‐dimensional porous carbon foam is fabricated by thermal pyrolysis of melamine foam an...
Macroporous carbon foams (Cfoams) were synthesized by the replication process from mesophase pitch p...
Biological fuel cells potentially offer efficient clean energy conversation from biomass to electric...
Presented herein are a review of climate change, renewable energy, and the need for energy storage a...
The fabrication of self-standing porous carbon foam nanostructures for trapping sulfur in Lithium-Su...
The limitations of two-dimensional electrodes can be overcome by using three-dimensional materials h...