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研究领域

The Sadtler research group seeks to understand and control structure-property relationships in adaptive, mesostructured materials. Through hierarchical design of the atomic composition, nanoscale morphology, and mesoscale organization of the individual components, we can direct the emergent chemical reactivity and physical properties of these complex systems. Research projects combine solution phase growth techniques to synthesize inorganic materials, external fields to control the growth and assembly of mesoscale architectures, and super-resolution imaging to provide spatiotemporal maps of the optical response and photocatalytic activity during the morphological evolution of these structures. Knowledge gained from these fundamental studies will be used to create functional materials, including plasmonic substrates that enhance absorption in thin-film semiconductors, mesostructured photocatalysts for solar fuels generation, and chemical sensors based on self-assembled photonic structures.

近期论文

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Sadtler, B.; Burgos, S.P.; Batara, N.A.; Beardslee, J.A.; Atwater, H.A.; Lewis, N.S. Proc. Natl. Acad. Sci. USA. 2013, 110, 19707-19712. "Phototropic Growth Control of Nanoscale Pattern Formation in Photoelectrodeposited Se-Te Films." McKone, J.R.; Sadtler, B.F.; Werlag, C.A.; Lewis, N.S.; Gray, H. B. ACS Catal. 2013, 3, 166-169. "Unsupported Ni-Mo Nanopowder for Efficient Electrochemical Hydrogen Evolution." Beardslee, J.A.; Sadtler, B.; Lewis, N.S. ACS Nano 2012, 6, 10303-10310. "Magnetic Field Alignment of Randomly Oriented, High Aspect Ratio Microwires into Vertically Oriented Arrays."

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