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- W2573985446 endingPage "073001" @default.
- W2573985446 startingPage "073001" @default.
- W2573985446 abstract "Raman spectroscopy has emerged as a powerful and important characterisation tool for probing molecular semiconducting materials. The useful optoelectronic properties of these materials arise from the delocalised ?-electron density in the conjugated core of the molecule, which also results in large Raman scattering cross-sections and a strong coupling between its electronic states and vibrational modes. For this reason, Raman spectroscopy offers a unique insight into the properties of molecular semiconductors, including: chemical structure, molecular conformation, molecular orientation, and fundamental photo- and electro-chemical processes - all of which are critically important to the performance of a wide range of optical and electronic organic semiconductor devices. Experimentally, Raman spectroscopy is non-intrusive, non-destructive, and requires no special sample preparation, and so is suitable for a wide range of in situ measurements, which are particularly relevant to issues of thermal, and photochemical stability. Here we review the development of the family of Raman spectroscopic techniques, which have been applied to the study of conjugated molecular semiconductors. We consider the suitability of each technique for particular circumstances, and the unique insights which it can offer, with a particular focus on the significance of these measurements for the continuing development of stable, high performance organic electronic devices." @default.
- W2573985446 created "2017-01-26" @default.
- W2573985446 creator A5024598974 @default.
- W2573985446 creator A5058451627 @default.
- W2573985446 creator A5058492424 @default.
- W2573985446 date "2017-01-19" @default.
- W2573985446 modified "2023-10-11" @default.
- W2573985446 title "Raman spectroscopy as an advanced structural nanoprobe for conjugated molecular semiconductors" @default.
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