Sensitization-initiated electron transfer (SenI-ET) describes a recently discovered photoredox strategy that relies on two consecutive light absorption events, triggering a sequence of energy and electron transfer steps. The cumulative energy input from two visible photons gives access to thermodynamically demanding reactions, which would be unattainable by single excitation with visible light. For this reason, SenI-ET has become a very useful strategy in synthetic photochemistry, but the mechanism has been difficult to clarify due to its complexity. We demonstrate that SenI-ET can operate via sensitized triplet-triplet annihilation upconversion, and we provide the first direct spectroscopic evidence for the catalytically active species. In...
Upconversion (UC), a process that can convert two or more photons with low energy to a single photon...
The sun is the only renewable energy source that can accommodate humanity’s energyneeds today and in...
Over the past decades, photoredox catalysis has developed to the big mature field of chemistry. Espe...
Sensitized triplet–triplet annihilation (TTA) is a promising mechanism for solar energy conversion, ...
By combining the energy input from two red photons, chemical reactions that would normally require b...
The conversion of CO2, H2O, or N2 to energy-rich compounds such as CH3OH, H2 or NH3 requires the pro...
Single electron redox processes allow the formation of highly reactive radicals – valuable intermedi...
Harnessing visible light to access excited (triplet) states of organic compounds can enable impressi...
Harnessing visible light to access excited (triplet) states of organic compounds can enable impressi...
[EN] Photon upconversion (UC) based on triplet¿triplet annihilation (TTA) is considered one of the m...
The development of photocatalytic reactions has provided many novel opportunities to expand the scop...
The introductory chapter offers the reader a short overview about the history and most important con...
The introductory chapter offers the reader a short overview about the history and most important con...
A mechanism based on the sequential absorption of two photons by the components of a redox couple ha...
A mechanism based on the sequential absorption of two photons by the components of a redox couple ha...
Upconversion (UC), a process that can convert two or more photons with low energy to a single photon...
The sun is the only renewable energy source that can accommodate humanity’s energyneeds today and in...
Over the past decades, photoredox catalysis has developed to the big mature field of chemistry. Espe...
Sensitized triplet–triplet annihilation (TTA) is a promising mechanism for solar energy conversion, ...
By combining the energy input from two red photons, chemical reactions that would normally require b...
The conversion of CO2, H2O, or N2 to energy-rich compounds such as CH3OH, H2 or NH3 requires the pro...
Single electron redox processes allow the formation of highly reactive radicals – valuable intermedi...
Harnessing visible light to access excited (triplet) states of organic compounds can enable impressi...
Harnessing visible light to access excited (triplet) states of organic compounds can enable impressi...
[EN] Photon upconversion (UC) based on triplet¿triplet annihilation (TTA) is considered one of the m...
The development of photocatalytic reactions has provided many novel opportunities to expand the scop...
The introductory chapter offers the reader a short overview about the history and most important con...
The introductory chapter offers the reader a short overview about the history and most important con...
A mechanism based on the sequential absorption of two photons by the components of a redox couple ha...
A mechanism based on the sequential absorption of two photons by the components of a redox couple ha...
Upconversion (UC), a process that can convert two or more photons with low energy to a single photon...
The sun is the only renewable energy source that can accommodate humanity’s energyneeds today and in...
Over the past decades, photoredox catalysis has developed to the big mature field of chemistry. Espe...