Incorporation of hydrogen bond moieties into the backbone or side chain of conjugated polymers is an effective strategy to enhance mechanical performance, facilitate morphological organization, and promote self-healing ability. However, the understanding of hydrogen bonds, particularly the effect of bond strength and directionality, on thermomechanical and optoelectronic performance is still in its infancy due to the competing influence of morphology, glass transition phenomena, and the measurement process itself. Here, we compare the influence of statistically incorporated amide and urea moieties on the mechanical properties of DPP-TVT parent polymers. We observed a profound difference in ductility; amide functionalization increases the st...
Organic semiconducting donor–acceptor polymers are promising candidates for stretchable electronics ...
Aromatic polyamides, the most famous of which is poly(p-phenylene terephthalamide) (PPTA), are well-...
It remains a huge challenge to create advanced polymeric materials combining high strength, great to...
Conjugation breakers (CBs) with different H-bonding chemistry and linker flexibility are designed an...
In contrast to conventional silicon-based electronics, semiconducting polymers show great promise fo...
An efficient strategy to modulate the mechanical properties of conjugated polymers has been develope...
Diketopyrrolopyrrole (DPP)-based donor–acceptor conjugated polymers, with increasing amount of weak ...
The intrinsically rigid and limited strain of most conjugated polymers has encouraged us to optimize...
Functional materials having the ability to self‐heal cracks or scratches after damage are of great i...
The past decades have witnessed a surging exploration of semiconducting polymers for the application...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemical Engineering, 2011.Supramolecular polymer...
The next generation of electronics is heading towards the integration of devices onto the human pers...
In order to investigate the effects of strong and well-defined hydrogen bonding on the properties of...
A series of six low molecular weight elastomers with hydrogen bonding end-groups have been designed,...
Organic semiconducting donor–acceptor polymers are promising candidates for stretchable electronics ...
Organic semiconducting donor–acceptor polymers are promising candidates for stretchable electronics ...
Aromatic polyamides, the most famous of which is poly(p-phenylene terephthalamide) (PPTA), are well-...
It remains a huge challenge to create advanced polymeric materials combining high strength, great to...
Conjugation breakers (CBs) with different H-bonding chemistry and linker flexibility are designed an...
In contrast to conventional silicon-based electronics, semiconducting polymers show great promise fo...
An efficient strategy to modulate the mechanical properties of conjugated polymers has been develope...
Diketopyrrolopyrrole (DPP)-based donor–acceptor conjugated polymers, with increasing amount of weak ...
The intrinsically rigid and limited strain of most conjugated polymers has encouraged us to optimize...
Functional materials having the ability to self‐heal cracks or scratches after damage are of great i...
The past decades have witnessed a surging exploration of semiconducting polymers for the application...
Thesis (Ph. D.)--University of Rochester. Dept. of Chemical Engineering, 2011.Supramolecular polymer...
The next generation of electronics is heading towards the integration of devices onto the human pers...
In order to investigate the effects of strong and well-defined hydrogen bonding on the properties of...
A series of six low molecular weight elastomers with hydrogen bonding end-groups have been designed,...
Organic semiconducting donor–acceptor polymers are promising candidates for stretchable electronics ...
Organic semiconducting donor–acceptor polymers are promising candidates for stretchable electronics ...
Aromatic polyamides, the most famous of which is poly(p-phenylene terephthalamide) (PPTA), are well-...
It remains a huge challenge to create advanced polymeric materials combining high strength, great to...