Organic materials are well-suited to certain applications due to their low cost, low weight, and mechanical flexibility, but are less desirable for other applications due to poor conduction of electricity and heat. The contributions of my work focus on strategies to mitigate these limitations in current and emerging organic materials, developing techniques to improve charge carrier mobility in doped organic semiconductors (OSCs) and improve thermal conductivity in common commercial plastic materials. Understanding of charge carrier transport is a prerequisite to developing a good electrical conductor. In OSCs, charge carriers are historically assumed to be strongly localized, which bears heavily on their assumed mechanism of transport; ho...
Significant improvements to the thermoelectric figure of merit ZT have emerged in recent years, prim...
According to different sources, from forty to sixty percent of the overall energy generated in the w...
Organic thermoelectric (TE) materials can directly convert heat to electricity, and they are emergin...
There is a great need to recycle energy wasted as heat into usable energy using clean, low-cost, and...
The thermoelectric properties of organic semiconductors allow them to directly convert heat into ele...
Room temperature flexible heat harvesters based on conducting polymers are ideally suited to cover t...
Room temperature flexible heat harvesters based on conducting polymers are ideally suited to cover t...
Thermoelectrics currently attracts considerable attention as a promising branch in the field of orga...
Room temperature flexible heat harvesters based on conducting polymers are ideally suited to cover t...
Room temperature flexible heat harvesters based on conducting polymers are ideally suited to cover t...
Thermoelectric materials can turn temperature differences directly into electricity. To use this to ...
Thermoelectric materials can turn temperature differences directly into electricity. To use this to ...
A significant challenge in the rational design of organic thermoelectric materials is to realize sim...
Thermoelectric effect is a physical phenomenon which intricately relates the thermal energy of charg...
The thermoelectric effect is a physical phenomenon which intricately relates the thermal energy of c...
Significant improvements to the thermoelectric figure of merit ZT have emerged in recent years, prim...
According to different sources, from forty to sixty percent of the overall energy generated in the w...
Organic thermoelectric (TE) materials can directly convert heat to electricity, and they are emergin...
There is a great need to recycle energy wasted as heat into usable energy using clean, low-cost, and...
The thermoelectric properties of organic semiconductors allow them to directly convert heat into ele...
Room temperature flexible heat harvesters based on conducting polymers are ideally suited to cover t...
Room temperature flexible heat harvesters based on conducting polymers are ideally suited to cover t...
Thermoelectrics currently attracts considerable attention as a promising branch in the field of orga...
Room temperature flexible heat harvesters based on conducting polymers are ideally suited to cover t...
Room temperature flexible heat harvesters based on conducting polymers are ideally suited to cover t...
Thermoelectric materials can turn temperature differences directly into electricity. To use this to ...
Thermoelectric materials can turn temperature differences directly into electricity. To use this to ...
A significant challenge in the rational design of organic thermoelectric materials is to realize sim...
Thermoelectric effect is a physical phenomenon which intricately relates the thermal energy of charg...
The thermoelectric effect is a physical phenomenon which intricately relates the thermal energy of c...
Significant improvements to the thermoelectric figure of merit ZT have emerged in recent years, prim...
According to different sources, from forty to sixty percent of the overall energy generated in the w...
Organic thermoelectric (TE) materials can directly convert heat to electricity, and they are emergin...