Jon Camden
Professor; Director of Undergraduate Studies · College of Science · University of Notre Dame
Quick answer: Jon Camden is Professor; Director of Undergraduate Studies at University of Notre Dame. Jon Camden shows an active PhD hiring signal as of 2026-09-11.
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Research interests
It is well known that plasmonic nanostructures are capable of harvesting light and concentrating it in the near field. This special behavior results from the collective oscillation of the conduction electrons in a metallic nanostructure, and has enabled a plethora of exciting applications such as plasmon-enhanced solar cells, photonic circuits, superlenses, chemical and biological sensing, and the detection of single molecules. Underlying many of these processes is the ability of plasmon excitation to greatly enhance electromagnetic fields at the particle surface. The Camden group is working to develop new applications of plasmonic nanostructures and to understand fundamental features of the molecule-plasmon couplings underlying these applications. Our current research efforts include: (1) Understanding the flow of plasmonic energy from nanoparticles at interfaces and into molecules, (2) Development of fast, portable, and cost-effective analytical methods for small molecules based on SERS, and (3) Exploration of surface-enhanced nonlinear spectroscopy, and (4) Direct imaging of plasmon-enhanced fields using electron microscopy.
Selected publications (since 2023)
Chandran, A.; Dominique, N. L.; Kaur, G.; Ekowo, L. C.; Clark, V.; Nalaoh, P.; Jensen, I. M.; Aloisio, M. D.; Crudden, C. M.; Arroyo-Currás, N.; Jenkins, D. M. and Camden, J. P. "Forming N-Heterocyclic Carbene Monolayers: Not all Deposition Methods are the Same" 2025 Nanoscale, 17 (9), pp.5413–5428. DOI: 10.1039/d4nr04428b.
Dominique, N. L.; Nalaoh, P.; Jenkins, D. M.; Vaia, R.; Park, K. and Camden, J. P. "One-Step Functionalization of Gold Nanorods with N-Heterocyclic Carbene Ligands" 2025 RSC Advances, 15 (7), pp.5007–5010. DOI: 10.1039/d5ra00754b.
Beutler, E. K.; Camden, J. P. and Masiello, D. J. "Resonance Energy Transfer in the Presence of a Spherical Cavity and Dispersive Substrate" 2024 Physical Review B, 110 (15), 155435. DOI: 10.1103/PhysRevB.110.155435.
Chowdhury, S.; Hu, G. H.;
Frequently asked questions
Is Jon Camden hiring PhD students at University of Notre Dame?
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What does Jon Camden research?
It is well known that plasmonic nanostructures are capable of harvesting light and concentrating it in the near field. This special behavior results from the collective oscillation of the conduction electrons in a metallic nanostructure, and has enabled a plethora of exciting applications such as pl
Data last updated: 2026-09-11 · Source: phd-match.com faculty database.
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