For wearable and implantable electronics applications, developing intrinsically stretchable polymer semiconductor is advantageous, especially in the manufacturing of large‐area and high‐density devices. A major challenge is to simultaneously achieve good electrical and mechanical properties for these semiconductor devices. While crystalline domains are generally needed to achieve high mobility, amorphous domains are necessary to impart stretchability. Recent progresses in the design of high‐performance donor–acceptor polymers that exhibit low degrees of energetic disorder, while having a high fraction of amorphous domains, appear promising for polymer semiconductors. Here, a low crystalline, i.e., near‐amorphous, indacenodithiophene‐co‐benz...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
Polymer semiconductors have been widely studied as an important component of stretchable electronic ...
Intrinsically stretchable semiconductors will facilitate the realization of seamlessly integrated st...
Abstract Despite the emerging scientific interest in polymer‐based stretchable electronics, the trad...
A series of alkyl-substituted indacenodithiophene (alkyl-IDT) semiconducting donor–acceptor polymers...
MasterResearch on intrinsic stretchable organic semiconductor is receiving a lot of attention in rec...
Designing intrinsically stretchable semiconducting polymers with suitable charge transport and mecha...
Polymer semiconductors are promising materials for stretchable, wearable, and implantable devices du...
Conjugation breakers (CBs) with different H-bonding chemistry and linker flexibility are designed an...
Previous breakthroughs in stretchable electronics stem from strain engineering and nanocomposite app...
Electronics are evolving from brittle to flexible and are expected to advance to stretchable. Develo...
Polymeric semiconductors offer the promise of low-cost, printable, and mechanically robust electroni...
The next materials challenge in organic stretchable electronics is the development of a fully degrad...
By considering the qualitative benefits associated with solution rheology and mechanical properties ...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
Polymer semiconductors have been widely studied as an important component of stretchable electronic ...
Intrinsically stretchable semiconductors will facilitate the realization of seamlessly integrated st...
Abstract Despite the emerging scientific interest in polymer‐based stretchable electronics, the trad...
A series of alkyl-substituted indacenodithiophene (alkyl-IDT) semiconducting donor–acceptor polymers...
MasterResearch on intrinsic stretchable organic semiconductor is receiving a lot of attention in rec...
Designing intrinsically stretchable semiconducting polymers with suitable charge transport and mecha...
Polymer semiconductors are promising materials for stretchable, wearable, and implantable devices du...
Conjugation breakers (CBs) with different H-bonding chemistry and linker flexibility are designed an...
Previous breakthroughs in stretchable electronics stem from strain engineering and nanocomposite app...
Electronics are evolving from brittle to flexible and are expected to advance to stretchable. Develo...
Polymeric semiconductors offer the promise of low-cost, printable, and mechanically robust electroni...
The next materials challenge in organic stretchable electronics is the development of a fully degrad...
By considering the qualitative benefits associated with solution rheology and mechanical properties ...
The pursuit of intelligent optoelectronics could have profound implications on our future daily life...
Next-generation wearable electronics require enhanced mechanical robustness and device complexity. B...
Polymer semiconductors have been widely studied as an important component of stretchable electronic ...