Inorganic Chemistry

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Size-Dependent Behavior of Porous Nanocrystals

Carl K. Brozek · Department of Chemistry and Biochemistry, University of Oregon

Mon, Oct 19, 2026 · 16:10 America/Los_Angeles

Producing metal-organic frameworks as nanoparticles could make them easier to process at industrial scale and change properties such as transport. Controlled synthesis and the effects of particle size remain insufficiently understood. Carl K. Brozek presents synthetic methods and mechanistic models for preparing MOF nanoparticles whose electrical conduction, magnetism, optical response and dynamic bonding differ from bulk frameworks. Solution-state spectroscopy and electrochemistry expose size-dependent and interfacial effects that conventional framework materials do not reveal. The work provides approaches for scalable MOF manufacture while raising broader questions about relationships among structure, size and properties. Speaker: Associate Professor Carl K. Brozek, University of Oregon, Department of Chemistry and Biochemistry. Hosted by Jack Zhang and Kevin Kittilstved for Washington State University Chemistry. Monday 19 October 2026, 16:10–17:00 America/Los_Angeles (Pacific Daylight Time). Attend at Fulmer Hall, Room 201, Washington State University, Pullman, Washington, USA, or use the public Zoom Link on the official event page.

metal-organic frameworksporous nanocrystals+1 moreSeries: Washington State University, Department of Chemistry

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Size-Dependent Behavior of Porous Nanocrystals

Carl K. Brozek · Department of Chemistry and Biochemistry, University of Oregon

Mon, Oct 19, 2026 · 16:10 America/Los_Angeles

Producing metal-organic frameworks as nanoparticles could make them easier to process at industrial scale and change properties such as transport. Controlled synthesis and the effects of particle size remain insufficiently understood. Carl K. Brozek presents synthetic methods and mechanistic models for preparing MOF nanoparticles whose electrical conduction, magnetism, optical response and dynamic bonding differ from bulk frameworks. Solution-state spectroscopy and electrochemistry expose size-dependent and interfacial effects that conventional framework materials do not reveal. The work provides approaches for scalable MOF manufacture while raising broader questions about relationships among structure, size and properties. Speaker: Associate Professor Carl K. Brozek, University of Oregon, Department of Chemistry and Biochemistry. Hosted by Jack Zhang and Kevin Kittilstved for Washington State University Chemistry. Monday 19 October 2026, 16:10–17:00 America/Los_Angeles (Pacific Daylight Time). Attend at Fulmer Hall, Room 201, Washington State University, Pullman, Washington, USA, or use the public Zoom Link on the official event page.

metal-organic frameworksporous nanocrystals+1 moreSeries: Washington State University, Department of Chemistry

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