Organic electrode materials are finding increasing use in energy storage devices due to their attractive properties that allow building of flexible and low weight devices in an environmentally friendlier manner than traditional alternatives. Among these organic electrode materials, conducting redox polymers (CRPs), consisting of conducing polymer (CP) with covalently attached redox active pendant groups (PG), have attracted our interests. This is due to the advantageous synergy between CP and PG, e.g. electronic conductivity, high stability and large charge storage capacity. In this thesis polypyrrole has been selected as CP and quinones as PGs. A series of quinone-pyrrole dyad polymers has been synthesized with a variety of quinone substit...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Organic electrode materials are finding increasing use in energy storage devices due to their attrac...
Organic electrical energy storage (EES) is a growing field of research that is expected to play an i...
Organic electrical energy storage (EES) is a growing field of research that is expected to play an i...
With the increased demand for electrical energy storage devices, e.g. electric vehicles and smart gr...
Organic electrode materials represent an intriguing alternative to their inorganic counterparts due ...
Organic electrode materials for rechargeable batteries have caught increasing attention since they c...
Organic electrode materials for rechargeable batteries have caught increasing attention since they c...
Organic electrode materials represent an intriguing alternative to their inorganic counterparts due ...
Conducting polymers with redox active pendant groups show properties typical of both conducting poly...
To meet future energy needs and to minimize CO2-emissions, a higher share of produced electricity mu...
To meet future energy needs and to minimize CO2-emissions, a higher share of produced electricity mu...
To meet future energy needs and to minimize CO2-emissions, a higher share of produced electricity mu...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Organic electrode materials are finding increasing use in energy storage devices due to their attrac...
Organic electrical energy storage (EES) is a growing field of research that is expected to play an i...
Organic electrical energy storage (EES) is a growing field of research that is expected to play an i...
With the increased demand for electrical energy storage devices, e.g. electric vehicles and smart gr...
Organic electrode materials represent an intriguing alternative to their inorganic counterparts due ...
Organic electrode materials for rechargeable batteries have caught increasing attention since they c...
Organic electrode materials for rechargeable batteries have caught increasing attention since they c...
Organic electrode materials represent an intriguing alternative to their inorganic counterparts due ...
Conducting polymers with redox active pendant groups show properties typical of both conducting poly...
To meet future energy needs and to minimize CO2-emissions, a higher share of produced electricity mu...
To meet future energy needs and to minimize CO2-emissions, a higher share of produced electricity mu...
To meet future energy needs and to minimize CO2-emissions, a higher share of produced electricity mu...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...