Works (11)

Updated: April 25th, 2025 18:04

2022 article

Design of Quasi-Endfire Spoof Surface Plasmon Polariton Leaky-Wave Textile Wearable Antennas

Wu, Y., Soltani, S., Sennik, B., Zhou, Y., Mackertich-Sengerdy, G., Whiting, E. B., … Jur, J. S. (2022, January 1). IEEE Access.

author keywords: Surface impedance; Surface waves; Leaky wave antennas; Modulation; Corrugated surfaces; Optical surface waves; Perturbation methods; Wearable computers; Leaky-wave antenna; spoof surface plasmon; surface wave; wearable antennas
topics (OpenAlex): Microwave Engineering and Waveguides; Metamaterials and Metasurfaces Applications; Antenna Design and Analysis
Sources: Web Of Science, NC State University Libraries
Added: November 28, 2022

2022 article

Textile‐Integrated Liquid Metal Electrodes for Electrophysiological Monitoring

Li, B. M., Reese, B. L., Ingram, K., Huddleston, M. E., Jenkins, M., Zaets, A., … Tabor, C. E. (2022, June 23). Advanced Healthcare Materials, Vol. 7.

By: B. Li n, B. Reese*, K. Ingram*, M. Huddleston*, M. Jenkins*, A. Zaets*, M. Reuter*, M. Grogg* ...

author keywords: airbrush; e-textiles; flexible electronics; smart textiles; soft electrodes; spray coating
MeSH headings : Electric Conductivity; Electric Impedance; Electrodes; Metals; Textiles
topics (OpenAlex): Advanced Sensor and Energy Harvesting Materials; Tactile and Sensory Interactions; Conducting polymers and applications
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Sources: ORCID, Web Of Science, NC State University Libraries
Added: June 23, 2022

2021 article

Airbrushed PVDF–TrFE Fibrous Sensors for E-Textiles

Li, B. M., Ju, B., Zhou, Y., Knowles, C. G., Rosenberg, Z., Flewwellin, T. J., … Jur, J. S. (2021, November 29). ACS Applied Electronic Materials, Vol. 11.

By: B. Li n, B. Ju n, Y. Zhou n, C. Knowles n, Z. Rosenberg n, T. Flewwellin n, F. Kose n, J. Jur n

author keywords: solution blow spinning; nanofibers; PVDF-TrFE scaffold; nonwovens; piezoelectric
topics (OpenAlex): Advanced Sensor and Energy Harvesting Materials; Tactile and Sensory Interactions; Electrospun Nanofibers in Biomedical Applications
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Sources: ORCID, Web Of Science, NC State University Libraries
Added: December 1, 2021

2021 article

Interconnected cathode-electrolyte double-layer enabling continuous Li-ion conduction throughout solid-state Li-S battery

Yan, C., Zhou, Y., Cheng, H., Orenstein, R., Zhu, P., Yildiz, O., … Zhang, X. (2021, October 13). Energy Storage Materials, Vol. 1.

By: C. Yan n, Y. Zhou n, H. Cheng n, R. Orenstein n, P. Zhu n, O. Yildiz n, P. Bradford n, J. Jur n ...

author keywords: Garnet; Composite solid electrolytes; All-solid-state batteries; Lithium-sulfur batteries; Continuous Li-ion conduction
topics (OpenAlex): Advanced Battery Materials and Technologies; Advancements in Battery Materials; Advanced Battery Technologies Research
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Sources: Web Of Science, NC State University Libraries
Added: November 15, 2021

2021 article

Microstructures in All-Inkjet-Printed Textile Capacitors with Bilayer Interfaces of Polymer Dielectrics and Metal–Organic Decomposition Silver Electrodes

Kim, I., Ju, B., Zhou, Y., Li, B. M., & Jur, J. S. (2021, May 14). ACS Applied Materials & Interfaces, Vol. 13, pp. 24081–24094.

By: I. Kim n, B. Ju n, Y. Zhou n, B. Li n & J. Jur n

author keywords: e-textiles; inkjet printing; polymer dielectrics; MOD silver ink; interface behavior; flexible electronics
topics (OpenAlex): Advanced Sensor and Energy Harvesting Materials; Nanomaterials and Printing Technologies; Liquid Crystal Research Advancements
TL;DR: How textiles' unique microstructures and bilayer dielectric layer designs benefit reliability and scalability in the inkjet process as well as the use in wearable electronics with electromechanical performance is demonstrated. (via Semantic Scholar)
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Sources: ORCID, Web Of Science, NC State University Libraries
Added: May 15, 2021

2020 article

Direct-Write Spray Coating of a Full-Duplex Antenna for E-Textile Applications

Zhou, Y., Soltani, S., Li, B. M., Wu, Y., Kim, I., Soewardiman, H., … Jur, J. S. (2020, November 29). Micromachines, Vol. 11, p. 1056.

author keywords: flexible textile antenna; screen printing; direct-write spray coating; microstrip patch antenna
topics (OpenAlex): Antenna Design and Analysis; Wireless Body Area Networks; Advanced Antenna and Metasurface Technologies
TL;DR: This work details a novel fabrication process for flexible textile-based multifunctional antennas with enhanced dielectric properties and shows the potential to simplify the assembly of traditionally complex E-textile systems. (via Semantic Scholar)
Source: ORCID
Added: December 1, 2020

2020 article

Efficient sub-15 nm cubic-phase core/shell upconversion nanoparticles as reporters for ensemble and single particle studies

Tan, M., Monks, M.-J., Huang, D., Meng, Y., Chen, X., Zhou, Y., … Chen, G. (2020, January 1). Nanoscale.

topics (OpenAlex): Luminescence Properties of Advanced Materials; Radiation Detection and Scintillator Technologies; Perovskite Materials and Applications
TL;DR: The results underline the potential applicability of the described sub-15 nm cubic-phase core/shell UCNPs for ensemble- and single particle-level bioimaging. (via Semantic Scholar)
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Source: ORCID
Added: May 7, 2020

2020 article

Low-Profile Strip-Loaded Textile Antenna With Enhanced Bandwidth and Isolation for Full-Duplex Wearable Applications

Mao, C. X., Zhou, Y., Wu, Y., Soewardiman, H., Werner, D. H., & Jur, J. S. (2020, April 29). IEEE Transactions on Antennas and Propagation.

By: C. Mao*, Y. Zhou n, Y. Wu*, H. Soewardiman n, D. Werner* & J. Jur n

author keywords: Bandwidth; Textiles; Resonant frequency; Antenna measurements; Scattering parameters; Feeds; Antennas; full-duplex; screen printing; textile antenna; wearable applications
topics (OpenAlex): Antenna Design and Analysis; Wireless Body Area Networks; Energy Harvesting in Wireless Networks
Source: ORCID
Added: May 22, 2020

2019 article

Kirigami‐Inspired Textile Electronics: K.I.T.E.

Li, B. M., Kim, I., Zhou, Y., Mills, A. C., Flewwellin, T. J., & Jur, J. S. (2019, October 4). Advanced Materials Technologies.

By: B. Li n, I. Kim n, Y. Zhou n, A. Mills n, T. Flewwellin n & J. Jur n

author keywords: e-textiles; flexible electronics; inkjet printing; stretchable biometric sensors; wearable electronics
topics (OpenAlex): Advanced Sensor and Energy Harvesting Materials; Advanced Materials and Mechanics; Nanomaterials and Printing Technologies
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Source: ORCID
Added: November 27, 2019

2018 article

Inkjet Process for Conductive Patterning on Textiles: Maintaining Inherent Stretchability and Breathability in Knit Structures

Kim, I., Shahariar, H., Ingram, W. F., Zhou, Y., & Jur, J. S. (2018, December 27). Advanced Functional Materials, Vol. 29, p. 1807573.

By: I. Kim n, H. Shahariar n, W. Ingram n, Y. Zhou n & J. Jur n

author keywords: e-textiles; flexible electronics; inkjet printing; reactive silver ink; ultrathin coating
topics (OpenAlex): Advanced Sensor and Energy Harvesting Materials; Nanomaterials and Printing Technologies; Advanced Materials and Mechanics
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Sources: Web Of Science, ORCID, NC State University Libraries
Added: March 11, 2019

2017 article

Fluorescence-enhanced bio-detection platforms obtained through controlled “step-by-step” clustering of silver nanoparticles

Liu, P., Zhou, Y., Guo, M., Yang, S., Félix, O., Martel, D., … Decher, G. (2017, December 15). Nanoscale, Vol. 10, pp. 848–855.

MeSH headings : Biological Assay; Cluster Analysis; Fluorescent Dyes; Metal Nanoparticles; Polyethylenes; Quaternary Ammonium Compounds; Silver
topics (OpenAlex): Gold and Silver Nanoparticles Synthesis and Applications; Advanced biosensing and bioanalysis techniques; Nanocluster Synthesis and Applications; Quantum Dots Synthesis And Properties
TL;DR: The preparation of fluorescence-based bioassay platforms using spray-assisted step-by-step assembly of silver nanoparticles (Ag NPs) and poly(diallyldimethylammonium chloride) (PDDA) is presented and a substantial fluorescence enhancement was measured. (via Semantic Scholar)
Source: ORCID
Added: October 2, 2019

Education

Updated: October 26th, 2018 11:57

2016 - present

North Carolina State University Raleigh, NC, US
Textile

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