Micro-Raman Imaging of Isomeric Segregation in Small-Molecule Organic Semiconductors

C.-W. Huang, X. You, P. J. Diemer, A. J. Petty II, J. E. Anthony, O. D. Jurchescu, J. M. Atkin. Micro-Raman imaging of isomeric segregation in small-molecule organic semiconductors. Communications Chemistry 2, 22 (2019).

Abstract

Charge transport in organic semiconductors is highly sensitive to film heterogeneity and intermolecular interactions, but probing these properties on the length scales of disorder is often difficult. Here we use micro-Raman spectroscopy to assign vibrational modes of isomerically pure syn and anti 2,8-difluoro-5,11-bis(triethylsilylethynyl)anthradithiophene (diFTES ADT) by comparing to density functional theory calculations. With polarizationdependent measurements, we determine the orientation of crystallites in pure isomers. In mixed-isomer samples, we observe narrow linewidths and superposition spectra, indicating coexistence of isomerically pure sub-domains on length scales smaller than the probe area. Using the ring breathing modes close to 1300 cm−1 as indicators of the pure isomer crystalline sub-domains, we image their spatial distribution with 200-nm resolution. These results demonstrate the power of micro-Raman spectroscopy for investigating spatial heterogeneities and clarifying the origin of the reduced charge carrier mobility displayed in mixed-isomer diF-TES ADT.

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Quantitative Effects of Disorder on Chemically Modified Amorphous Carbon Electrodes

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Advances in Use of p-H2 as a Novel Host for Matrix IR Spectroscopy