Organic charge-transfer superstructures are enabling new interfacial electronics, such as organic thermoelectrics, spin-charge converters, and solar cells. These carbon-based materials could also play an important role in spin-based electronics due to their exceptionally long spin lifetime. However, to explore these potentials a coherent design strategy to control interfacial charge-transfer interaction is indispensable. Here we report that the control of organic crystallization and interfacial electron coupling are keys to dictate external stimuli responsive behaviors in organic charge-transfer superstructures. The integrated experimental and computational study reveals the importance of chemically driven interfacial coupling in organic ch...
Ground-state integer charge transfer is commonly regarded as the basic mechanism of molecular electr...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
Organic ferroelectric materials are currently a hot research topic, with mixed stack charge transfer...
Organic charge-transfer superstructures are enabling new interfacial electronics, such as organic th...
© 2017 American Chemical Society. The donor-acceptor interface within molecular charge transfer (CT)...
Organic charge-transfer ferromagnets have been studied for many years, and numerous breakthroughs ha...
The work presented in this thesis covers a range of different surfaces and interfaces of organic mol...
Organic charge transfer (CT) complexes obtained by combining molecular electron donors and acceptors...
During the last decade, interest on the growth and self-assembly of organic molecular species on sol...
Quantum-chemical techniques are applied to assess the electronic structure at donor/acceptor heteroj...
Charge transfer processes between donor-acceptor complexes and metallic electrodes are at the heart ...
The performance of devices from organic semiconductors is often governed by charge transfer phenomen...
Organic charge transfer (CT) compounds display a wide range of exotic electronic properties (charge-...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
Ground-state integer charge transfer is commonly regarded as the basic mechanism of molecular electr...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
Organic ferroelectric materials are currently a hot research topic, with mixed stack charge transfer...
Organic charge-transfer superstructures are enabling new interfacial electronics, such as organic th...
© 2017 American Chemical Society. The donor-acceptor interface within molecular charge transfer (CT)...
Organic charge-transfer ferromagnets have been studied for many years, and numerous breakthroughs ha...
The work presented in this thesis covers a range of different surfaces and interfaces of organic mol...
Organic charge transfer (CT) complexes obtained by combining molecular electron donors and acceptors...
During the last decade, interest on the growth and self-assembly of organic molecular species on sol...
Quantum-chemical techniques are applied to assess the electronic structure at donor/acceptor heteroj...
Charge transfer processes between donor-acceptor complexes and metallic electrodes are at the heart ...
The performance of devices from organic semiconductors is often governed by charge transfer phenomen...
Organic charge transfer (CT) compounds display a wide range of exotic electronic properties (charge-...
Organic electronic materials, possessing conjugated π-systems, are extensively used as the active la...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
Ground-state integer charge transfer is commonly regarded as the basic mechanism of molecular electr...
Organic/metal interfaces control the performance of many optoelectronic organic devices, including o...
Organic ferroelectric materials are currently a hot research topic, with mixed stack charge transfer...