Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usefulness is limited by a relatively low mobility of polaron charge carriers. Past research indicates a positive correlation between charge density and charge mobility in organic semiconductors. This relationship is usually attributed to the phenomenon of excess charges filling traps. Here, we explore whether charge density may also affect mobility via influence on intermolecular couplings. Density functional theory (DFT) with a long-range corrected (LC-BLYP) functional is used to calculate charge densities and electronic couplings of negative charges on C<sub>70</sub> fullerenes in the presence of nearby negative point charges, which provides a...
In this dissertation, we employ a number of computational methods, including Ab Initio, Density Func...
Fullerene-based materials are widely used as acceptor and electron transport layer materials in orga...
Strong electron–phonon coupling leads to polaron localization in molecular semiconductor materials a...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
In this thesis, we model electronic states, charge transfer and charge transport in organic semicond...
Organic photovoltaics (OPVs) are a promising carbon-neutral energy conversion technology, with recen...
The characterization of the charge carrier transport in disordered fullerene films, grown by physica...
At the nanoscale, even a single atom change in the structure can noticeably alter the properties, an...
At the nanoscale, even a single atom change in the structure can noticeably alter the properties, an...
Using first principles density functional theory in combination with the nonequilibrium Green's func...
In this dissertation, we employ a number of computational methods, including Ab Initio, Density Func...
Fullerene-based materials are widely used as acceptor and electron transport layer materials in orga...
Strong electron–phonon coupling leads to polaron localization in molecular semiconductor materials a...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
Organic semiconductors offer a low-cost alternative to inorganic semiconductors. However, their usef...
In this thesis, we model electronic states, charge transfer and charge transport in organic semicond...
Organic photovoltaics (OPVs) are a promising carbon-neutral energy conversion technology, with recen...
The characterization of the charge carrier transport in disordered fullerene films, grown by physica...
At the nanoscale, even a single atom change in the structure can noticeably alter the properties, an...
At the nanoscale, even a single atom change in the structure can noticeably alter the properties, an...
Using first principles density functional theory in combination with the nonequilibrium Green's func...
In this dissertation, we employ a number of computational methods, including Ab Initio, Density Func...
Fullerene-based materials are widely used as acceptor and electron transport layer materials in orga...
Strong electron–phonon coupling leads to polaron localization in molecular semiconductor materials a...