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Updated: Jan 8, 2026

Monitoring the Effects of Illumination on the Structure of Conjugated Polymer Gels Using Neutron Scattering
Published on: December 21, 2017
Synergistic Effects of Insulating Polystyrene on Hole Transport in Crystalline Conjugated Polymers
Insub Noh1, Yuya Horiuchi1, Hiroki Ogawa2
1Department of Polymer Chemistry, Graduate School of Engineering, Kyoto University, Katsura, Kyoto, 615-8510, Japan.
Abstract:
The morphology of conjugated polymers plays a significant role in determining their charge transport characteristics. In this study, we investigate the hole transport properties of a crystalline conjugated polymer (PBDB-T) blended with an insulating polystyrene (PS) with different molecular weights and weight fractions. Surprisingly, PBDB-T/PS blend films exhibit enhanced hole mobility compared to the PBDB-T neat films. This enhancement is strongly correlated with morphological changes in PBDB-T, which are dependent upon the molecular weight of the PS matrix. Specifically, blending with low molecular weight PS promotes homogeneous mixing and increased crystallinity, leading to a moderate improvement in the charge transport. In contrast, blending with high molecular weight PS induces phase separation, resulting in the formation of PBDB-T rich domains. These domains enable efficient charge percolation through localized aggregation and by reducing trap densities. These findings underscore the dual role of insulating polymers in modulating phase-separated structures and charge transport pathways in conjugated polymer systems. The results demonstrate that morphology engineering via polymer blending offers a simple yet powerful strategy for optimizing charge transport, which in turn offers promising avenues for the advancement in flexible optoelectronic devices.
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