Effective models for the photophysical properties of organometallic complexes
TL;DRAbstract
Organometallic complexes have potential applications as optoelectronic components in organic light emitting diodes (OLEDs) and organic photovoltaics (OPVs), as well as in other organic electronic devices. Such organic electronic devices have the potential to be cheaper, more physically flexible, and have a degree of tunability in their properties (via chemical substitutions) unmatched by traditional crystalline semiconductors such as doped silicon. To optimise complexes for use in organic electronic devices, one would hope to understand the connection between the chemical structure of the molecule and the photophysical properties of the device. Understanding the photophysics of single molecules is an important step towards understanding this connection. By finding and understanding trends in the properties of single molecules, and correlations between the properties of individual molecules and of molecules in devices, one can guide the design of new organometallic complexes. To find ge
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Organometallic complexes have potential applications as optoelectronic components in organic light emitting diodes (OLEDs) and organic photovoltaics (OPVs), as well as in other organic electronic devices. Such organic electronic devices have the potential to be cheaper, more physically flexible, and have a degree of tunability in their properties (via chemical substitutions) unmatched by traditional crystalline semiconductors such as doped silicon. To optimise complexes for use in organic electronic devices, one would hope to understand the connection between the chemical structure of the molecule and the photophysical properties of the device. Understanding the photophysics of single molecules is an important step towards understanding this connection. By finding and understanding trends in the properties of single molecules, and correlations between the properties of individual molecules and of molecules in devices, one can guide the design of new organometallic complexes. To find ge
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