Carlos Silva and Felix Thouin in Silva's lab at Georgia Tech

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Carlos Silva and Felix Thouin in Silva's lab at Georgia Tech

Carlos Silva (l.) in his lab at Georgia Tech with graduate research assistant FĂ©lix Thouin examining a setup to process laser light in the visible range for the testing of quantum properties in a halide organic-inorganic perovskite. Georgia Tech / Rob Felt

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Research, Chemistry and Chemical Engineering, Energy, Engineering, Physics and Physical Sciences
Keywords
semiconductor, LED light, Led Lighting, LED Lights, photovoltaic, photovoltaic materials, photovoltaic panels, photovoltaic power, Photovoltaic Technology, photovoltaics, hybrid semiconductor, quantum particle, Quantum Mechanics, Quantum properties, halide perovskite, halide organic-inorganic perovskite, HOIP, HOIP, metal-halide, lead iodide, PbI4, semiconductor, optoelectronics, semiconductor for optoelectronics, perovskite, hybrid organic-inorganic perovskite, exciton, biexciton, laser, solar, photoelectric, photovoltaic, silicon, Graphene Electronics an, Optoelectronic, optoelectronic device, Electron Affinity, exciton, excitonics, polaron, Quantum wells, electron hole, quasiparticles, binding energy, non-covalent
Status
  • Created By: Ben Brumfield
  • Workflow Status: Published
  • Created On: Jan 14, 2019 - 5:38pm
  • Last Updated: Jan 14, 2019 - 5:38pm