Understanding the role of the distribution of polymer chain lengths on process–structure–property relationships in semiconducting organic electronics has remained elusive due to challenges in synthesizing targeted molecular weights (Mw) and polydispersity indices. Here, a facile blending approach of various poly(3-hexylthiophene) (P3HT) molecular weights is used to investigate the impact of the distribution of polymer chain lengths on self-assembly into aggregates and associated charge transport properties. Low and high Mw samples were blended to form a highly polydisperse sample which was compared to a similar, medium Mw control. Self-assembly was induced by preprocessing the polymer solution with UV irradiation and subsequent solution ag...
Polymer aggregation and phase separation of polymer–polymer blends are effectively tuned from self‐s...
A new strategy for influencing the solid-state morphology of conjugated polymers was developed throu...
Semiconducting polymers are considered as the materials for the next generation large-area and flexi...
Evaluating new, promising organic molecules to make next-generation organic optoelectronic devices n...
Model semiconducting polymer blends of well-controlled molecular weight distributions are fabricated...
Charge transport in polymeric thin films is a complicated process, which involves a multitude of cou...
The discovery of organic semiconductors has opened new possibilities for the development of large-s...
Electronic properties of organic semiconductors are often critically dependent upon their ability to...
Polymer aggregation and phase separation of polymer-polymer blends are effectively tuned from self-s...
Semiconducting polymers are a versatile class of materials used for a variety of electronic applicat...
Conjugated polymers represent the next generation of conducting materials that will enable technolog...
Poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl C61-butyric acid methyl ester (PCBM) blends have been...
Starting from first-time demonstration of controlled assembly of Poly(3-hexylthiophene) (P3HT), a mo...
Long-range ordering emerges in poly(3-hexylthiophene) (P3HT) solutions during time-dependent aggreg...
The ultimate control over chain self-assembly is key to unravel and optimize the relationship betwee...
Polymer aggregation and phase separation of polymer–polymer blends are effectively tuned from self‐s...
A new strategy for influencing the solid-state morphology of conjugated polymers was developed throu...
Semiconducting polymers are considered as the materials for the next generation large-area and flexi...
Evaluating new, promising organic molecules to make next-generation organic optoelectronic devices n...
Model semiconducting polymer blends of well-controlled molecular weight distributions are fabricated...
Charge transport in polymeric thin films is a complicated process, which involves a multitude of cou...
The discovery of organic semiconductors has opened new possibilities for the development of large-s...
Electronic properties of organic semiconductors are often critically dependent upon their ability to...
Polymer aggregation and phase separation of polymer-polymer blends are effectively tuned from self-s...
Semiconducting polymers are a versatile class of materials used for a variety of electronic applicat...
Conjugated polymers represent the next generation of conducting materials that will enable technolog...
Poly(3-hexylthiophene) (P3HT) and [6,6]-phenyl C61-butyric acid methyl ester (PCBM) blends have been...
Starting from first-time demonstration of controlled assembly of Poly(3-hexylthiophene) (P3HT), a mo...
Long-range ordering emerges in poly(3-hexylthiophene) (P3HT) solutions during time-dependent aggreg...
The ultimate control over chain self-assembly is key to unravel and optimize the relationship betwee...
Polymer aggregation and phase separation of polymer–polymer blends are effectively tuned from self‐s...
A new strategy for influencing the solid-state morphology of conjugated polymers was developed throu...
Semiconducting polymers are considered as the materials for the next generation large-area and flexi...