Modified conformation and physical properties in conducting polymers due to varying conjugation and solvent interactions
Paramita Kar Choudhury, Debjani Bagchi, C. S. Suchand Sangeeth, and, Reghu Menon

TL;DR
This study investigates how conjugation extent and solvent interactions influence the chain conformation and assembly in conducting polymers, revealing increased conjugation and DMSO solvent lead to extended chains and improved charge transport.
Contribution
It provides detailed SAXS analysis showing how conjugation and solvent choice affect polymer chain conformation and electrical properties, a novel insight into conducting polymer behavior.
Findings
Increased conjugation length raises persistence length in MEH-PPV.
DMSO solvent induces chain expansion and better organization in PEDOT-PSS.
Enhanced charge transport correlates with extended chain conformation in DMSO.
Abstract
Small angle X-ray scattering (SAXS) studies in poly[2-methoxy-5-(2'-ethyl-hexyloxy)-1,4-phenylene vinylene] (MEH-PPV) with varying conjugation, and polyethylene dioxythiophene complexed with polystyrene sulfonate (PEDOT-PSS) in different solvents have shown the important role of pi-electron conjugation and solvent-chain interactions in controlling the chain conformation and assembly. In MEH-PPV, by increasing the extent of conjugation from 30 to 100 %, the persistence length (l_p) increases from 20 to 66 Angstrom. Moreover, a pronounced second peak in the pair distribution function has been observed in fully conjugated chain, at larger length scales. This feature indicates that the chain segments tend to self-assemble as the conjugation along the chain increases. In case of PEDOT-PSS, the chains undergo solvent induced expansion and enhanced chain organization. The clusters formed by…
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Taxonomy
TopicsAdvanced Physical and Chemical Molecular Interactions · Fuel Cells and Related Materials · NMR spectroscopy and applications
