Accumulation and temporary storage of redox equivalents with visible light as an energy input is of pivotal importance for artificial photosynthesis because key reactions, such as CO2 reduction or water oxidation, require the transfer of multiple redox equivalents. We report on the first purely molecular system, in which a long-lived charge-separated state (τ≈870 ns) with two electrons accumulated on a suitable acceptor unit can be observed after excitation with visible light. Importantly, no sacrificial reagents were employed
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...
Accumulation and temporary storage of redox equivalents with visible light as an energy input is of ...
The photochemistry of a molecular pentad composed of a central anthraquinone (AQ) acceptor flanked b...
Photoexcitation of a molecular pentad in the presence of Sc3+ in de-aerated CH3CN leads to a quinone...
Fuel-forming reactions such as CO2 reduction or water splitting require multiple redox equivalents. ...
The photochemistry of a molecular pentad composed of a central anthraquinone (AQ) acceptor flanked b...
A molecular pentad comprised of a central multielectron donor and two flanking photosensitizer-accep...
An oligotriarylamine (OTA) unit, a Ru(bpy)32+ photosensitizer moiety (Ru), and an anthraquinone (AQ)...
The photochemistry of a molecular pentad composed of a central anthraquinone (AQ) acceptor flanked b...
The formation of so-called solar fuels from abundant low-energetic compounds, such as carbon dioxide...
The formation of so-called solar fuels from abundant low-energetic compounds, such as carbon dioxide...
Controlling light‐induced accumulation of electrons or holes is desirable in view of multi‐electron ...
The formation of so-called solar fuels from abundant low-energetic compounds, such as carbon dioxide...
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...
Accumulation and temporary storage of redox equivalents with visible light as an energy input is of ...
The photochemistry of a molecular pentad composed of a central anthraquinone (AQ) acceptor flanked b...
Photoexcitation of a molecular pentad in the presence of Sc3+ in de-aerated CH3CN leads to a quinone...
Fuel-forming reactions such as CO2 reduction or water splitting require multiple redox equivalents. ...
The photochemistry of a molecular pentad composed of a central anthraquinone (AQ) acceptor flanked b...
A molecular pentad comprised of a central multielectron donor and two flanking photosensitizer-accep...
An oligotriarylamine (OTA) unit, a Ru(bpy)32+ photosensitizer moiety (Ru), and an anthraquinone (AQ)...
The photochemistry of a molecular pentad composed of a central anthraquinone (AQ) acceptor flanked b...
The formation of so-called solar fuels from abundant low-energetic compounds, such as carbon dioxide...
The formation of so-called solar fuels from abundant low-energetic compounds, such as carbon dioxide...
Controlling light‐induced accumulation of electrons or holes is desirable in view of multi‐electron ...
The formation of so-called solar fuels from abundant low-energetic compounds, such as carbon dioxide...
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...
Photoinduced electron transfer is involved in a number of photochemical and photobiological processe...