We demonstrate that local and long-range orders of poly(3-hexylthiophene) (P3HT) semicrystalline films can be synergistically improved by combining chemical functionalization of the substrate with solution-state disentanglement and preaggregation of P3HT in a θ solvent, leading to a very significant enhancement of the field effect carrier mobility. The preaggregation and surface functionalization effects combine to enhance the carrier mobility nearly 100-fold as compared with standard film preparation by spin-coating, and nearly 10-fold increase over the benefits of preaggregation alone. In situ quartz crystal microbalance with dissipation (QCM-D) experiments reveal enhanced deposition of preaggregates on surfaces modified with an alkyl-te...
The discovery of organic semiconductors has opened new possibilities for the development of large-s...
Presented here is a novel and efficient method used to improve carrier mobilities of poly(3-hexylthi...
Controlling the morphology of polymer semiconductors remains a fundamental challenge that hinders th...
With the aim of enhancing the field-effect mobility by promoting surface-mediated two-dimensional mo...
Interface morphology play an important role in controlling transport characteristics for devices bas...
Enhancement of charge transport in organic polymer semiconductors is a crucial step in developing op...
Long-range ordering emerges in poly(3-hexylthiophene) (P3HT) solutions during time-dependent aggreg...
A facile solution-processing strategy toward well-ordered one-dimensional nanostructures of conjugat...
Starting from first-time demonstration of controlled assembly of Poly(3-hexylthiophene) (P3HT), a mo...
Trade-off between mechanical flexibility due to amorphicity and highly facile charge transport emana...
Efficient charge carrier transport in organic field-effect transistors (OFETs) often requires thin f...
Understanding and controlling polymer semiconductor morphology is critical to achieving high charge ...
Conjugated polymers have attracted much interest as promising alternatives to inorganic semiconducto...
DoctorSolution processable semiconductors have attracted significant attention in recent years due t...
Organic semiconductors hold a great potential in applications of low-cost, light-weight, large-area ...
The discovery of organic semiconductors has opened new possibilities for the development of large-s...
Presented here is a novel and efficient method used to improve carrier mobilities of poly(3-hexylthi...
Controlling the morphology of polymer semiconductors remains a fundamental challenge that hinders th...
With the aim of enhancing the field-effect mobility by promoting surface-mediated two-dimensional mo...
Interface morphology play an important role in controlling transport characteristics for devices bas...
Enhancement of charge transport in organic polymer semiconductors is a crucial step in developing op...
Long-range ordering emerges in poly(3-hexylthiophene) (P3HT) solutions during time-dependent aggreg...
A facile solution-processing strategy toward well-ordered one-dimensional nanostructures of conjugat...
Starting from first-time demonstration of controlled assembly of Poly(3-hexylthiophene) (P3HT), a mo...
Trade-off between mechanical flexibility due to amorphicity and highly facile charge transport emana...
Efficient charge carrier transport in organic field-effect transistors (OFETs) often requires thin f...
Understanding and controlling polymer semiconductor morphology is critical to achieving high charge ...
Conjugated polymers have attracted much interest as promising alternatives to inorganic semiconducto...
DoctorSolution processable semiconductors have attracted significant attention in recent years due t...
Organic semiconductors hold a great potential in applications of low-cost, light-weight, large-area ...
The discovery of organic semiconductors has opened new possibilities for the development of large-s...
Presented here is a novel and efficient method used to improve carrier mobilities of poly(3-hexylthi...
Controlling the morphology of polymer semiconductors remains a fundamental challenge that hinders th...