A structureproperty relationship in all-organic dye solar cells is revealed by first-principles molecular dynamics and real-time time-dependent density functional theory simulations, accompanied with experimental confirmation. An important structural feature at the interface, TiN anchoring, for a broad group of all-organic dyes on TiO2 is inferred from energetics, vibrational recognition, and electronic data. This fact is contrary to the usual assumption; however, it optimizes electronic level alignment and photoelectron injection dynamics, greatly contributing to the observed efficiency improvement in all-organic cyanoacrylate dye sensitized solar cells
A photosensitizer plays a crucial role in the conversion of solar light to electricity in dye-sensit...
The interface between the semiconductor and the dye is one of the fundamental parameters that direct...
Using Time-Dependent Density Functional Theory (TD-DFT), we have investigated the optical properties...
The effects of alkoxy chain length in triarylamine based donor acceptor organic dyes are investigate...
The aggregation effect of five A–D(π)–A organic dyes, <b>1</b>–<b>5</b>, with different anchoring g...
This work investigates the correlation of structural and photovoltaic properties of dyes used in dye...
<p>We aim at providing better insight into the parameters that govern the intramolecular charge tran...
Two organic dyes (LS-1 and IQ4) containing identical electron donor and acceptor units but distinct ...
The performance of dye-sensitized solar cells is tightly linked to the relative energy level alignme...
The electronic energy levels of some representative isolated and oxide-supported organic dyes, relev...
Theoretical and computational modeling is a powerful tool to investigate and characterize the struct...
We investigate electron and hole dynamics upon photon excitation in dye-sensitized solar cells, usin...
Using density functional theory (DFT), we have investigated the structural and electronic properties...
In the present work, geometries, electronic structures, photovoltaic and optical properties have bee...
Density functional theory (DFT) and time-dependent DFT are useful computational approaches frequentl...
A photosensitizer plays a crucial role in the conversion of solar light to electricity in dye-sensit...
The interface between the semiconductor and the dye is one of the fundamental parameters that direct...
Using Time-Dependent Density Functional Theory (TD-DFT), we have investigated the optical properties...
The effects of alkoxy chain length in triarylamine based donor acceptor organic dyes are investigate...
The aggregation effect of five A–D(π)–A organic dyes, <b>1</b>–<b>5</b>, with different anchoring g...
This work investigates the correlation of structural and photovoltaic properties of dyes used in dye...
<p>We aim at providing better insight into the parameters that govern the intramolecular charge tran...
Two organic dyes (LS-1 and IQ4) containing identical electron donor and acceptor units but distinct ...
The performance of dye-sensitized solar cells is tightly linked to the relative energy level alignme...
The electronic energy levels of some representative isolated and oxide-supported organic dyes, relev...
Theoretical and computational modeling is a powerful tool to investigate and characterize the struct...
We investigate electron and hole dynamics upon photon excitation in dye-sensitized solar cells, usin...
Using density functional theory (DFT), we have investigated the structural and electronic properties...
In the present work, geometries, electronic structures, photovoltaic and optical properties have bee...
Density functional theory (DFT) and time-dependent DFT are useful computational approaches frequentl...
A photosensitizer plays a crucial role in the conversion of solar light to electricity in dye-sensit...
The interface between the semiconductor and the dye is one of the fundamental parameters that direct...
Using Time-Dependent Density Functional Theory (TD-DFT), we have investigated the optical properties...