There is substantial urgency to create artificial light-harvesting systems that are relatively inexpensive and capable of absorbing a significant fraction of the solar spectrum. Molecular materials possess a number of attractive characteristics for this purpose, such as their light weight, spectral tunability, and the potential to use self-assembly to form large structures capable of executing multiple photophysical processes required for photoelectric energy conversion. In this work, we demonstrate that ionically assembled complexes composed of oppositely charged conjugated polyelectrolytes (CPEs) that function as excitonic donor/acceptor pairs possess 10 significant potential as artificial energy transfer antennae. We find that, upon comp...
Polymer solar cells have high potential to convert solar energy into electricity in a cost-effective...
The presence of energetically low-lying triplet states is a hallmark of organic semiconductors. Even...
Recent studies of conjugated polymer donor–acceptor blends show that the donor and acceptor can form...
Conjugated polyelectrolytes (CPEs) have the potential to serve as building blocks of artificial ligh...
Conjugated polyelectrolytes (CPE) offer intriguing possibilities as light-harvesting scaffold in art...
Artificial light harvesting, a process that involves converting sunlight into chemical potential ene...
Conjugated polyelectrolytes (CPE) offer intriguing possibilities as light-harvesting scaffold in art...
Conjugated polyelectrolytes (CPEs) absorb light, are soluble in aqueous media, and are amenable to f...
The dramatic decrease in the world’s finite reserve of fossil fuels has led to an increasedemand for...
Oppositely charged, water-soluble polyelectrolytes undergo a spontaneous complexation and phase sepa...
Despite significant recent progress, much about the mechanism for charge photogeneration in organic ...
We investigate the role of excess excitation energy on the nature of photoexcitations in donor–accep...
We investigate the role of excess excitation energy on the nature of photoexcitations in donor-accep...
Polymer solar cells have high potential to convert solar energy into electricity in a cost-effective...
Controlling both energy and electron transfer processes is necessary for the performance of both lig...
Polymer solar cells have high potential to convert solar energy into electricity in a cost-effective...
The presence of energetically low-lying triplet states is a hallmark of organic semiconductors. Even...
Recent studies of conjugated polymer donor–acceptor blends show that the donor and acceptor can form...
Conjugated polyelectrolytes (CPEs) have the potential to serve as building blocks of artificial ligh...
Conjugated polyelectrolytes (CPE) offer intriguing possibilities as light-harvesting scaffold in art...
Artificial light harvesting, a process that involves converting sunlight into chemical potential ene...
Conjugated polyelectrolytes (CPE) offer intriguing possibilities as light-harvesting scaffold in art...
Conjugated polyelectrolytes (CPEs) absorb light, are soluble in aqueous media, and are amenable to f...
The dramatic decrease in the world’s finite reserve of fossil fuels has led to an increasedemand for...
Oppositely charged, water-soluble polyelectrolytes undergo a spontaneous complexation and phase sepa...
Despite significant recent progress, much about the mechanism for charge photogeneration in organic ...
We investigate the role of excess excitation energy on the nature of photoexcitations in donor–accep...
We investigate the role of excess excitation energy on the nature of photoexcitations in donor-accep...
Polymer solar cells have high potential to convert solar energy into electricity in a cost-effective...
Controlling both energy and electron transfer processes is necessary for the performance of both lig...
Polymer solar cells have high potential to convert solar energy into electricity in a cost-effective...
The presence of energetically low-lying triplet states is a hallmark of organic semiconductors. Even...
Recent studies of conjugated polymer donor–acceptor blends show that the donor and acceptor can form...