Kaifeng Wu mainly investigates Optoelectronics, Quantum dot, Ultrafast laser spectroscopy, Nanorod and Heterojunction. Kaifeng Wu does research in Optoelectronics, focusing on Quantum efficiency specifically. His study looks at the relationship between Quantum dot and fields such as Luminescence, as well as how they intersect with chemical problems.
His work carried out in the field of Ultrafast laser spectroscopy brings together such families of science as Perovskite, Surface plasmon resonance and Electron transfer. His research in Electron transfer intersects with topics in Molecular physics, Nanoparticle and Acceptor. His Nanorod study incorporates themes from Exciton and Semiconductor.
Kaifeng Wu mainly investigates Quantum dot, Optoelectronics, Perovskite, Exciton and Nanocrystal. His biological study spans a wide range of topics, including Molecular physics, Doping, Photon upconversion and Wave function. The various areas that Kaifeng Wu examines in his Optoelectronics study include Ultrafast laser spectroscopy and Picosecond.
His Perovskite research incorporates themes from Chemical physics, Photon, Halide, Visible spectrum and Photoluminescence. His Exciton research incorporates elements of Heterojunction, Semiconductor, Quantum well, Electron transfer and Superlattice. His Heterojunction study integrates concerns from other disciplines, such as Nanorod and Nanosheet.
Kaifeng Wu mostly deals with Perovskite, Nanocrystal, Optoelectronics, Chemical physics and Quantum dot. His Nanocrystal study combines topics in areas such as Coupling and Wave function. His research integrates issues of Colloid and Exciton in his study of Optoelectronics.
His work deals with themes such as Semiconductor and Superlattice, which intersect with Exciton. He has included themes like Ultrafast laser spectroscopy and Electron transfer in his Chemical physics study. His Quantum dot research includes elements of Molecular physics, Spin, Picosecond and Photon upconversion.
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