Nosang Myung

Bernard Keating Crawford Professor; Concurrent Professor

Bernard Keating Crawford Professor; Concurrent Professor
Office
105E McCourtney Hall
Notre Dame, IN 46556
Phone
574-631-3468
Email
nmyung@nd.edu

Lab Website

Research Areas

  • Physical/Analytical Chemistry

Research Specialties

  • Materials
  • Measurement

Prospective Graduate Students

Request More Information
Apply

Biography

Year Title
2025-present Concurrent Professor, Department of Chemistry & Biochemistry, University of Notre Dame
2020-present Bernard Keating Crawford Professor, University of Notre Dame
2003-2020 Professor, University of California Riverside
2001-2003 Engineer, NASA Jet Propulsion Laboratory
1999-2001 Research Engineer, University of California Los Angeles
1998 Ph.D. in Chemical Engineering, University of California Los Angeles
1997 M.S. in Chemical Engineering, University of California Los Angeles
1994 B.S. in Chemical Engineering, University of California Los Angeles

Research Interests

The Myung group at the University of Notre Dame is utilizing cost-effective electrochemical and electrospinning methods to create unique hybrid nanostructures for various applications including biological and chemical sensor arrays, thermoelectrics, photoelectrochemistry, environmental remediation, and phase change memory materials.

Selected Publications

  • Jeong, S. H.; Lee, S. Y.; Myung, N. V. and Lee, K. H. "Metastable Phase in Molybdate XMoO4 (X = Ni, Co, Cu) for Oxygen Evolution Reaction: Structural Phase Dependence" 2026 Electronic Materials Letters, in press. DOI: 10.1007/s13391-026-00641-8.
  • Choa, H.; Kim, M. Y.; Park, C. O.; To, D.; Myung, N. V. and Lee, K. H. "Mechanistic Understanding of Gas Sensing in Palladium Nanoparticles-Decorated Porous ZnO Nanosheets: Correlating Energy Barrier and Ionized Oxygen Species with Sensing Performance" 2026 Sensors and Actuators Reports, 11, 100422. DOI: 10.1016/j.snr.2025.100422.
  • Al-badani, F.; Yang, B. X.; To, D.; Conant, R.; Stahovich, T. F. and Myung, N. V. "Functionalized Tin Oxide Nanofibers as an Excellent Hydrogen Cyanide Gas Sensor with Part Per Billions Low Detection Limit" 2026 Journal of the Electrochemical Society, 173 (9), 097511. DOI: 10.1149/1945-7111/ae6824.
  • Park, J. Y.; Jang, B.; Kim, J. Y.; Myung, N. V. and Choa, Y. H. "Selective Laser-Induced Etching Process-Enabled Double-Cavity Glass MEMS Hydrogen Sensor at Room-Temperature Sensitivity" 2026 Microsystems & Nanoengineering, 12 (1), 142. DOI: 10.1038/s41378-026-01265-6.
  • Park, J. Y.; Lee, J. W.; Cho, H. B.; Myung, N. V. and Choa, Y. H. "IoT-Enabled Capacitive Ammonia Sensor Platform for Real-Time Environmental Monitoring at Room Temperature" 2026 Sensors and Actuators B-Chemical, 447 (2), 138831. DOI: 10.1016/j.snb.2025.138831.
  • Butzlaff, A. H.; Ghanim, A. H.; Choi, Y. Y.; Yan, C. X.; Shan, X. A.; Myung, N. V.; Werth, C. J.; Cwiertny, D. M. and Mubeen, S. "Evaluating Copper-Modified Carbon Composite Nanofiber Electrodes for Electrocatalytic Nitrate Reduction" 2025 ACS Applied Engineering Materials, 3 (12), pp.4282–4295. DOI: 10.1021/acsaenm.5c00510.