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- W3106599164 abstract "Organic semiconductors (OSCs) are of fundamental and technological interest, owing to their properties and functions in a range of optoelectronic devices, including organic light-emitting diodes, organic photovoltaics and organic field-effect transistors, as well as emerging technologies, such as bioelectronic devices. The solid-state organization of the subunits in OSC materials, whether molecular or polymeric, determines the properties relevant to device performance. Nevertheless, the systematic relationships between composition, structure and processing conditions are rarely fully understood, owing to the complexity of the organic architectures and the resulting solid-state structures. Characterization over different length scales and timescales is essential, especially for semi-ordered or amorphous regions, for which solid-state NMR (ssNMR) spectroscopy yields nanoscale insight that can be correlated with scattering measurements and macroscopic property analyses. In this Review, we assess recent results, challenges and opportunities in the application of ssNMR to OSCs, highlighting its role in state-of-the-art materials design and characterization. We illustrate how insight is obtained on local order and composition, interfacial structures, dynamics, interactions and how this information can be used to establish structure–property relationships. Finally, we provide our perspective on applying ssNMR to the next generation of OSCs and the development of new ssNMR methods." @default.
- W3106599164 created "2020-12-07" @default.
- W3106599164 creator A5004477573 @default.
- W3106599164 creator A5031911852 @default.
- W3106599164 creator A5040209235 @default.
- W3106599164 creator A5051743081 @default.
- W3106599164 date "2020-09-17" @default.
- W3106599164 modified "2023-09-29" @default.
- W3106599164 title "Insight into the structures and dynamics of organic semiconductors through solid-state NMR spectroscopy" @default.
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