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Transforming the way we interact with light

The NSF Center for Integration of Modern Optoelectronic Materials on Demand (IMOD) is making atomically precise semiconductors and integrating them into applications ranging from high-definition VR displays to scalable single-photon sources needed to power optical quantum communication and computing.

We are educating a new generation of scientists and engineers through convergent team-based collaboration across traditional disciplinary and organizational interfaces.

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Recent News

Professor Cherie Kagan elected to American Academy of Arts & Sciences

Professor Cherie Kagan elected to American Academy of Arts & Sciences

Bringing clean energy and optoelectronics to high school STEM classrooms

Bringing clean energy and optoelectronics to high school STEM classrooms

Professor Cherie Kagan named 2025 IEEE Fellow

Professor Cherie Kagan named 2025 IEEE Fellow

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Recent Publications

Cs2AgSbI6 Nanocrystals: a New Air-Stable Iodide Double-Perovskite (Elpasolite) Semiconductor

Cs2AgSbI6 Nanocrystals: a New Air-Stable Iodide Double-Perovskite (Elpasolite) Semiconductor

JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2025, ASAP

Narrow-Linewidth Emission and Weak Exciton-Phonon Coupling in 2D Layered Germanium Halide Perovskites

Narrow-Linewidth Emission and Weak Exciton-Phonon Coupling in 2D Layered Germanium Halide Perovskites

ADVANCED MATERIALS, 2025, 2419879

Multiple Emission Peaks Challenge Polariton Condensation in Phenethylammonium-Based 2D Perovskite Microcavities

Multiple Emission Peaks Challenge Polariton Condensation in Phenethylammonium-Based 2D Perovskite Microcavities

ACS PHOTONICS, 2025, ASAP

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