2018-1-1Currently, sensitized up-conversion based on triplet-tripled annihilation STTA-UC in bi-component organic systems is the most promising technique to recover sub-bandgap photons, showing good efficiencies also at excitation intensities comparable to the solar irradiance. In STTA-UC, high-energy light is generated through annihilation of.
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Read More2018-1-1Currently, sensitized up-conversion based on triplet-tripled annihilation STTA-UC in bi-component organic systems is the most promising technique to recover sub-bandgap photons, showing good efficiencies also at excitation intensities comparable to the solar irradiance. In STTA-UC, high-energy light is generated through annihilation of.
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Read More2018-1-1Currently, sensitized up-conversion based on triplet-tripled annihilation STTA-UC in bi-component organic systems is the most promising technique to recover sub-bandgap photons, showing good efficiencies also at excitation intensities comparable to the solar irradiance. In STTA-UC, high-energy light is generated through annihilation of.
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Read More2018-1-1Thermionic energy conversion technology Present and future. NASA Technical Reports Server NTRS Shimada, K. Morris, J. F. 1977-01-01. Aerospace and terrestrial applications of thermionic direct energy conversion and advances in direct energy conversion DEC technology are surveyed. Electrode materials, the cesium plasma drop the difference between the barrier index and.
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Read More2018-1-1Currently, sensitized up-conversion based on triplet-tripled annihilation STTA-UC in bi-component organic systems is the most promising technique to recover sub-bandgap photons, showing good efficiencies also at excitation intensities comparable to the solar irradiance. In STTA-UC, high-energy light is generated through annihilation of.
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