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个人简介
Our research program broadly studies the interaction between light and nanostructured materials, and particularly focuses on the emergent optical, electrical, and chemical properties of nanoscale materials under light concentration. By tailoring the nanoscale geometry, environment, and complex dielectric function we control the propagation of light in subwavelength dimensions, creating new materials not found in nature and improving our fundamental understanding of light absorption, emission, and carrier collection. We are especially interested in studying plasmonic materials, colloidal nanoparticles, and metamaterials, in addition to their interactions with atoms, molecules, and semiconductors. We design nanostructures using a combination of experimental and theoretical techniques, synthesize our structures using both bottom-up and top-down methods, characterize the electrical and optical properties, and ultimately integrate our designs into functional devices and systems. Our research is highly interdisciplinary and combines principles from physics, chemistry, materials science, chemical engineering, and electrical engineering. Our current research interests include: (1) improving the efficiency and reducing the cost of solar cells through nanophotonic design, (2) designing chiral materials.
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论文共 90 篇作者统计合作学者相似作者
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Yidenekachew J. Donie, Maya Ramamurthy,Rohan D. Chakraborty,Lorraine F. Francis,C. Daniel Frisbie,Vivian E. Ferry
ADVANCED OPTICAL MATERIALS (2024)
ADVANCED SUSTAINABLE SYSTEMS (2023)
Annick Anctil,Meghan N. Beattie,Christopher Case, Aditya Chaudhary, Benjamin D. Chrysler,Michael G. Debije,Stephanie Essig,David K. Ferry,Vivian E. Ferry,Marina Freitag,Isaac Gould,Karin Hinzer,
JOURNAL OF PHOTONICS FOR ENERGYno. 4 (2023)
PRX Energyno. 2 (2023)
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ACS applied nano materialsno. 7 (2023): 6444-6453
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ACS APPLIED NANO MATERIALSno. 7 (2023): 6444-6453
Advanced Sustainable Systemsno. 8 (2023)
ACS APPLIED ENERGY MATERIALSno. 21 (2023): 10978-10986
ACS Applied Optical Materialsno. 1 (2023): 491-499
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