The ability to design a particular geometry of porous electrodes at multiple length scales in a lithium‐ion battery can significantly and positively influence battery performance because it enables control over distribution of current and potential and can enhance ion and electron transport. 3D architecturally designed carbon electrodes are developed, whose structural factors are independently controlled and whose dimensions span micrometers to centimeters, using digital light processing and pyrolysis. These free‐standing lattice electrodes are comprised of monolithic glassy carbon beams, are lightweight, with a relative density of 0.1–0.35, and mechanically robust, with a maximum precollapse stress of 27 MPa, which facilitates electrode re...
Carbon nanostructural materials have gained the spotlight as promising anode materials for energy st...
Three-dimensionally ordered macroporous (3DOM) materials are composed of well-interconnected pore an...
The nanostructuring of silicon (Si) has recently received great attention, as it holds potential to ...
The ability to design a particular geometry of porous electrodes at multiple length scales in a lith...
The ability to design a particular geometry of porous electrodes at multiple length scales in a lith...
The ability to design a particular geometry of porous electrodes at multiple length scales in a lith...
The ability to design a particular geometry of porous electrodes at multiple length scales in a lith...
Owing to the overwhelming advantage in energy density, lithium–sulfur (Li–S) battery is a promising ...
We have designed, fabricated and tested a novel carbon electrode for three-dimensional (3D) lithium-...
Today's MEMS devices are limited more so by the batteries that supply their power than the fabricati...
Owing to the overwhelming advantage in energy density, lithium–sulfur (Li–S) battery is a promising ...
Optimized three-dimensional (3D) electrode architectures hold the promise of improving battery perfo...
Optimized three-dimensional (3D) electrode architectures hold the promise of improving battery perfo...
Abstract Lithium-ion batteries (LIBs), which are high-energy-density and low-safety-risk secondary b...
Carbon nanostructural materials have gained the spotlight as promising anode materials for energy st...
Carbon nanostructural materials have gained the spotlight as promising anode materials for energy st...
Three-dimensionally ordered macroporous (3DOM) materials are composed of well-interconnected pore an...
The nanostructuring of silicon (Si) has recently received great attention, as it holds potential to ...
The ability to design a particular geometry of porous electrodes at multiple length scales in a lith...
The ability to design a particular geometry of porous electrodes at multiple length scales in a lith...
The ability to design a particular geometry of porous electrodes at multiple length scales in a lith...
The ability to design a particular geometry of porous electrodes at multiple length scales in a lith...
Owing to the overwhelming advantage in energy density, lithium–sulfur (Li–S) battery is a promising ...
We have designed, fabricated and tested a novel carbon electrode for three-dimensional (3D) lithium-...
Today's MEMS devices are limited more so by the batteries that supply their power than the fabricati...
Owing to the overwhelming advantage in energy density, lithium–sulfur (Li–S) battery is a promising ...
Optimized three-dimensional (3D) electrode architectures hold the promise of improving battery perfo...
Optimized three-dimensional (3D) electrode architectures hold the promise of improving battery perfo...
Abstract Lithium-ion batteries (LIBs), which are high-energy-density and low-safety-risk secondary b...
Carbon nanostructural materials have gained the spotlight as promising anode materials for energy st...
Carbon nanostructural materials have gained the spotlight as promising anode materials for energy st...
Three-dimensionally ordered macroporous (3DOM) materials are composed of well-interconnected pore an...
The nanostructuring of silicon (Si) has recently received great attention, as it holds potential to ...