Dayan Ban, Ph.D.

Affiliations: 
2003 University of Toronto, Toronto, ON, Canada 
Area:
Electronics and Electrical Engineering
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"Dayan Ban"

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Edward H. (Ted) Sargent grad student 2003 University of Toronto
 (Direct nanometric probing of the inner workings of lasing optoelectronic devices.)
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Publications

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Khan AA, Rana MM, Wang S, et al. (2023) Control of Halogen Atom in Inorganic Metal-Halide Perovskites Enables Large Piezoelectricity for Electromechanical Energy Generation. Small (Weinheim An Der Bergstrasse, Germany). e2303366
Wang S, Khan AA, Teale S, et al. (2023) Large piezoelectric response in a Jahn-Teller distorted molecular metal halide. Nature Communications. 14: 1852
Wen B, Deimert C, Wang S, et al. (2020) Six-level hybrid extraction/injection scheme terahertz quantum cascade laser with suppressed thermally activated carrier leakage. Optics Express. 28: 26499-26508
Rassel S, Xu C, Zhang S, et al. (2020) Noninvasive blood glucose detection using a quantum cascade laser. The Analyst
Ma D, Todorović P, Meshkat S, et al. (2020) Chloride Insertion-Immobilization Enables Bright, Narrowband, and Stable Blue-Emitting Perovskite Diodes. Journal of the American Chemical Society
Wang S, Xu C, Duan F, et al. (2020) Thermal dynamic imaging of mid-infrared quantum cascade lasers with high temporal–spatial resolution Journal of Applied Physics. 128: 83106
Duan F, Chen K, Wang S, et al. (2020) Temperature profile and transient response of thermally tunable ridge waveguides with laterally supported suspension Applied Physics Letters. 116: 011102
Guan X, Wang S, Liu W, et al. (2020) Determining the exciton diffusion length of copper phthalocyanine in operating planar-heterojunction organic solar cells European Physical Journal-Applied Physics. 89: 30201
Khan AA, Rana M, Huang G, et al. (2020) Maximizing piezoelectricity by self-assembled highly porous perovskite–polymer composite films to enable the internet of things Journal of Materials Chemistry. 8: 13619-13629
Sun B, Johnston A, Xu C, et al. (2020) Monolayer Perovskite Bridges Enable Strong Quantum Dot Coupling for Efficient Solar Cells Joule. 4: 1542-1556
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