Organic small molecules with electrochemically active and reversible redox groups are excellent candidates for energy storage systems due to their abundant natural origin and design flexibility. However, their practical application is generally limited by inherent electrical insulating properties and high solubility. To achieve both high energy density and power density, organic small molecules are usually immobilized on the surface of a carbon substrate with a high specific surface area and excellent electrical conductivity through non-covalent interactions or chemical bonds. The resulting composite materials are called organic small-molecule electrodes (OMEs). The redox reaction of OMEs occurs near the surface with fast kinetic and higher...
The world's rising energy needs and finite fossil-fuel resources demand the development of new metho...
Supercapacitors offer superior energy storage capabilities than traditional capacitors, making them ...
In this thesis, I describe my efforts in developing organic materials for energy storage and generat...
In order to develop next generation cathode materials for electrical energy storage (EES) devices, t...
Our program on capacitive energy storage is a comprehensive one that combines experimental and compu...
The 21st century has been marked by an exponential increase in new and interconnected technologies a...
Organic rechargeable batteries, which use organics as electrodes, are excellent candidates for next-...
This article reviews critically selected recent literature on electrochemical energy storage (EES) t...
DoctorThere are rising demands for developing electronics and energy storage system for more widespr...
This thesis describes the design of organic electrode materials for energy storage devices and the i...
The development of high performance yet cost effective energy storage devices is critical for enabli...
International audienceRechargeable batteries are essential elements for many applications, ranging f...
In this perspective article, we review some of the most recent advances in the emerging field of org...
Electrochemical energy-storage devices have the potential to be clean and efficient, but their curre...
To sustainably satisfy the growing demand for energy, organic carbonyl compounds (OCCs) are being wi...
The world's rising energy needs and finite fossil-fuel resources demand the development of new metho...
Supercapacitors offer superior energy storage capabilities than traditional capacitors, making them ...
In this thesis, I describe my efforts in developing organic materials for energy storage and generat...
In order to develop next generation cathode materials for electrical energy storage (EES) devices, t...
Our program on capacitive energy storage is a comprehensive one that combines experimental and compu...
The 21st century has been marked by an exponential increase in new and interconnected technologies a...
Organic rechargeable batteries, which use organics as electrodes, are excellent candidates for next-...
This article reviews critically selected recent literature on electrochemical energy storage (EES) t...
DoctorThere are rising demands for developing electronics and energy storage system for more widespr...
This thesis describes the design of organic electrode materials for energy storage devices and the i...
The development of high performance yet cost effective energy storage devices is critical for enabli...
International audienceRechargeable batteries are essential elements for many applications, ranging f...
In this perspective article, we review some of the most recent advances in the emerging field of org...
Electrochemical energy-storage devices have the potential to be clean and efficient, but their curre...
To sustainably satisfy the growing demand for energy, organic carbonyl compounds (OCCs) are being wi...
The world's rising energy needs and finite fossil-fuel resources demand the development of new metho...
Supercapacitors offer superior energy storage capabilities than traditional capacitors, making them ...
In this thesis, I describe my efforts in developing organic materials for energy storage and generat...