Publication

2025 - Current

[18] Lee, H., Lim, J., Shepherd, S., Akin, L., Shurgalin. M., Cobi, A.; Nikolayenko, A., Fuflyigin, V., Bacon, A., Nguyen, M. T. T., Wang, X., Cunningham, B. T.

       “A dual-port, smartphone-linked, pocket-size fluorimeter for rapid molecular diagnostic assays at point-of-care.”

coming soon

[17] Lim, J., Lee, H., Cunningham, B. T., Bashir, R. (2025)

       “Extraction-Free RNA Virus Detection from Dried Whole Blood Using Lyophilized RT-LAMP for True Point-of-Care Diagnostics”

coming soon

[16] Bhaskar, S., Wang, W., Lee, H., Liu, L., Umrao, S., Liu, W., Bacon, A., Tibbs, J., Khemtonglang, K., Tan, A., Ayupova, T., Chen, W.-C., Wang, X., & Cunningham, B. T.

      “Photonic Crystal Grating Resonance and Interfaces for Health Diagnostic Technologies.”

       Chemical Reviews

       https://doi.org/10.1021/acs.chemrev.4c00653

[15] Lee, H., Li, S., Liu, L., Wang, W., Ayupova, T., Tibbs, J., Kim, C., Fang, Y., Do, M. N., & Cunningham, B. T. 

     “Physically grounded deep learning-enabled gold nanoparticle localization and quantification in photonic resonator absorption microscopy for digital resolution molecular   diagnostics.” 

       Biosensors and Bioelectronics

       https://doi.org/10.1016/j.bios.2025.117455

[14] Liu, L., Ayupova, T., Umrao, S., Akin, L. D., Lee, H., Tibbs, J., Wang, X., Demirci, U., & Cunningham, B. T. 

      “A biosensor-integrated filtration device for nanoparticle isolation and label-free imaging.” 

      Lab on a Chip

      https://doi.org/10.1039/D5LC00089K

[13] Bhaskar, S., Xiong, Y., Shepherd, S., Tibbs, J., Bacon, A. K., Liu, W., Akin, L. D., Ayupova, T., Wang, W., Lee, H., Liu, L., Tan, A., Khemtonglang, K., Wang, X., & Cunningham, B. T.

     “Nano-engineering at functional photonic crystal interfaces. In Nano-Engineering at Functional Interfaces for Multi-Disciplinary Applications (pp. 123–156).”

      Elsevier

     https://doi.org/10.1016/B978-0-443-21691-6.00007-X  

 

2024 - 2025

[13] Khemtonglang, K., Liu, W., Lee, H., Wang, W., Li, S., Li, Z. Y., Shepherd, S., Yang, Y., Diel, D. G., Fang, Y., & Cunningham, B. T.

       “Portable, smartphone-linked, and miniaturized photonic resonator absorption microscope (PRAM Mini) for point-of-care diagnostics.”

       Biomedical Optics Express

       https://doi.org/10.1364/BOE.531388

portable, smartphone linked, and miniaturized photonic resonator absorption microscope (pram mini) for point of care diagnostics 1

2023 - 2024

[7] Bacon, A., Wang, W., Lee, H., Umrao, S., Sinawang, P. D., Akin, D., Khemtonglang, K., Tan, A., Hirshfield, S., Demirci, U., Wang, X., & Cunningham, B. T.  

      “Review of HIV Self Testing Technologies and Promising Approaches for the Next Generation.”

      Biosensors

      https://doi.org/10.3390/bios13020298

 

biosensors 13 00298 01

[8] Barya, P., Xiong, Y., Shepherd, S., Gupta, R., Akin, L. D., Tibbs, J., Lee, H., Singamaneni, S., & Cunningham, B. T. 

      “Photonic‐Plasmonic Coupling Enhanced Fluorescence Enabling Digital‐Resolution Ultrasensitive Protein Detection.” 

      Small

      https://doi.org/10.1002/smll.202207239

small 2023 barya photonic‐plasmonic coupling enhanced fluorescence enabling digital‐resolution ultrasensitive protein 1

[9] Lee, H., Wang, W., Chauhan, N., Xiong, Y., Magazine, N., Valdescruz, O., Kim, D. Y., Qiu, T., Huang, W., Wang, X., & Cunningham, B. T. 

     “Rapid detection of intact SARS-CoV-2 using designer DNA Nets and a pocket-size smartphone-linked fluorimeter.”

     Biosensors and Bioelectronics

     https://doi.org/10.1016/j.bios.2023.115228

rapid detection of intact sars cov 2 using designer dna nets and a pocket size smartphone linked fluorimeter 1

[10] Liu, L., Tibbs, J., Li, N., Bacon, A., Shepherd, S., Lee, H., Chauhan, N., Demirci, U., Wang, X., & Cunningham, B. T. 

   “A photonic resonator interferometric scattering microscope for label-free detection of nanometer-scale objects with digital precision in point-of-use environments.”

       Biosensors and Bioelectronics

       https://doi.org/10.1016/j.bios.2023.115197

a photonic resonator interferometric scattering microscope for label free detection of nanometer scale objects with digital precision in point of use environments 1

Previous - 2023

[11] Lee, H., Jankelow, A. M., Wang, W., Hoang, T.-H., Bacon, A., Sun, F., Chae, S., Kindratenko, V., Koprowski, K., Stavins, R. A., Ceriani, D. D., Engelder, Z. W., King, W. P., Do, M. N., Bashir, R., Valera, E., & Cunningham, B. T.
“Smartphone clip-on instrument and microfluidic processor for rapid sample-to-answer detection of Zika virus in whole blood using spatial RT-LAMP.” 

       Analyst

       https://doi.org/10.1039/D2AN00438K

d2an00438k 01

[12] Fraiwan, A., Lee, H., & Choi, S. (2016). 

       “A paper-based cantilever array sensor: Monitoring volatile organic compounds with naked eye.” 

       Talanta

       https://doi.org/10.1016/j.talanta.2016.05.048

a paper based cantilever array sensor monitoring volatile organic compounds with naked eye 1

[13] Wei, X., Lee, H., & Choi, S.

       “Biopower generation in a microfluidic bio-solar panel.”

       Sensors and Actuators B: Chemical 

       https://doi.org/10.1016/j.snb.2015.12.103

biopower generation in a microfluidic bio solar panel 1

[14] Yang, W., Wei, X., Fraiwan, A., Coogan, C. G., Lee, H., & Choi, S. 

     “Fast and sensitive water quality assessment: A μL-scale microbial fuel cell-based biosensor integrated with an air-bubble trap and electrochemical sensing functionality.”

       Sensors and Actuators B: Chemical

       https://doi.org/10.1016/j.snb.2015.12.002

fast and sensitive water quality assessment a μl scale microbial fuel cell based biosensor integrated with an air bubble trap and electrochemical sensing functionality 1

[15] Lee, H., & Choi, S. (2015). 

       “A micro-sized bio-solar cell for self-sustaining power generation.” 

       Lab on a Chip

       https://doi.org/10.1039/C4LC01069H

a micro sized bio solar cell for self sustaining power generation 1

[16] Lee, H., & Choi, S. (2015).
“An origami paper-based bacteria-powered battery.” 

       Nano Energy

       https://doi.org/10.1016/j.nanoen.2015.05.019

an origami paper based bacteria powered battery 1

[17] Fraiwan, A., Lee, H., & Choi, S. 

       “A Multianode Paper-Based Microbial Fuel Cell: A Potential Power Source for Disposable Biosensors.” 

       IEEE Sensors Journal 

       https://doi.org/10.1109/JSEN.2014.2332075

a multianode paper based microbial fuel cell a potential power source for disposable biosensors 1

[18] Yoon, S., Lee, H., Fraiwan, A., Dai, C., & Choi, S.

      “A Microsized Microbial Solar Cell: A demonstration of photosynthetic bacterial electrogenic capabilities.” 

       IEEE Nanotechnology Magazine

       https://doi.org/10.1109/MNANO.2014.2310073

a microsized microbial solar cell a demonstration of photosynthetic bacterial electrogenic capabilities 1