Thin films of fully conjugated donor-acceptor block copolymers composed of an electron donating block and an electron accepting block can be used as single component photoactive layers in organic photovoltaic (OPV) devices. In order to realize their full potential, control over microphase separation and thin-film morphology are critical. In conjugated block copolymer systems where one or more blocks can crystallize, the morphological evolution is governed by the competition between microphase separation and crystallization. In this work, we control crystallization of fully conjugated block copolymers with a random copolymer block. We suppress the crystal packing of poly(3-hexylthiophene-2,5-diyl) (P3HT) through the insertion of a small numb...
The microphase separation and crystallization of all-conjugated poly(3-butylthiophene)-<i>b</i>-pol...
While donor–acceptor block copolymers (BCPs) are widely discussed to be optimal model materials for ...
Conjugated block copolymers have the potential to improve solution processed optoelectronic devices ...
Thin films of fully conjugated donor–acceptor block copolymers composed of an electron donating bloc...
Conjugated polymers are class of electrically conductive polymers used in applications including org...
Conjugated polymers have been widely studied for their use in lightweight, flexible, and solution-pr...
Organic electronic materials have the potential to impact almost every aspect of modern life includi...
We have examined how the nanomorphology and crystallinity of semiconducting double-crystalline block...
All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, bu...
All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, bu...
All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, bu...
Block copolymers have the potential to self-assemble into thermodynamically stable nanostructures th...
Conventional inorganic solar technologies are expensive due to the high cost of processing, while or...
Microphase-separated donor–acceptor block copolymers have been discussed as ideal systems for morpho...
All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, bu...
The microphase separation and crystallization of all-conjugated poly(3-butylthiophene)-<i>b</i>-pol...
While donor–acceptor block copolymers (BCPs) are widely discussed to be optimal model materials for ...
Conjugated block copolymers have the potential to improve solution processed optoelectronic devices ...
Thin films of fully conjugated donor–acceptor block copolymers composed of an electron donating bloc...
Conjugated polymers are class of electrically conductive polymers used in applications including org...
Conjugated polymers have been widely studied for their use in lightweight, flexible, and solution-pr...
Organic electronic materials have the potential to impact almost every aspect of modern life includi...
We have examined how the nanomorphology and crystallinity of semiconducting double-crystalline block...
All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, bu...
All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, bu...
All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, bu...
Block copolymers have the potential to self-assemble into thermodynamically stable nanostructures th...
Conventional inorganic solar technologies are expensive due to the high cost of processing, while or...
Microphase-separated donor–acceptor block copolymers have been discussed as ideal systems for morpho...
All-conjugated block copolymers may be an effective route to self-assembled photovoltaic devices, bu...
The microphase separation and crystallization of all-conjugated poly(3-butylthiophene)-<i>b</i>-pol...
While donor–acceptor block copolymers (BCPs) are widely discussed to be optimal model materials for ...
Conjugated block copolymers have the potential to improve solution processed optoelectronic devices ...