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      Review on Thermionic Energy Converters

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          Photon-enhanced thermionic emission for solar concentrator systems.

          Solar-energy conversion usually takes one of two forms: the 'quantum' approach, which uses the large per-photon energy of solar radiation to excite electrons, as in photovoltaic cells, or the 'thermal' approach, which uses concentrated sunlight as a thermal-energy source to indirectly produce electricity using a heat engine. Here we present a new concept for solar electricity generation, photon-enhanced thermionic emission, which combines quantum and thermal mechanisms into a single physical process. The device is based on thermionic emission of photoexcited electrons from a semiconductor cathode at high temperature. Temperature-dependent photoemission-yield measurements from GaN show strong evidence for photon-enhanced thermionic emission, and calculated efficiencies for idealized devices can exceed the theoretical limits of single-junction photovoltaic cells. The proposed solar converter would operate at temperatures exceeding 200 degrees C, enabling its waste heat to be used to power a secondary thermal engine, boosting theoretical combined conversion efficiencies above 50%.
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            VAPOR PRESSURES, EVAPORATION, CONDENSATION AND ADSORPTION

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              Multilayer Thermionic Refrigeration

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                Author and article information

                Journal
                IEEE Transactions on Electron Devices
                IEEE Trans. Electron Devices
                Institute of Electrical and Electronics Engineers (IEEE)
                0018-9383
                1557-9646
                June 2016
                June 2016
                : 63
                : 6
                : 2231-2241
                Article
                10.1109/TED.2016.2556751
                83d90889-f106-4794-8540-3affc5c11196
                © 2016
                History

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