Publications

More at Google Scholar
Before UVA

1.    Zhao, X. , Zhou, Y., Song, Y., Xu,J., Li, J., Tat, T., Chen, G., Li, S., Chen, J. Permanent Fluidic Magnet for Liquid Bioelectronics. Nature Materials, 23, 703–710 (2024).
·     See “Magnetic Liquid Makes for AnInjectable Sensor in Living Tissue”, Nature, 629, 263 (2024).
·     Also see “Injectable and Retrievable Soft Electronics”, Nature Materials,23, 591–593 (2024).
·     Also see “Injectable Liquid Bioelectronics”, Nature Reviews Bioengineering, 2, 452 (2024)

2.    Zhao, X. , Zhou, Y., Li, A.,Xu, J., Karjagi, S., Hahm, E., Rulloda, L., Li, J., Hollister, J., Kavehpour, P., Chen, J. A Self-Filtering Ultrasensitive Liquid Acoustic Sensor for Voice Recognition. Nature Electronics DOI: 10.1038/s41928-024-01196-y (2024).

3.    Zhou,Y., Zhao, X., Xu, J., Fang, Y., Chen, G., Song, Y., Li, S. &Chen, J. Giant magnetoelastic effect in soft systems for bioelectronics. Nature Materials 20, 1670-1676 (2021).
·       Featured as Frontcover.
·       Also see “A Magnetic Patch on A Twitchy Arm Makes a Useful Current”. Nature,598, 239 (2021).
·       Also see “Energy Supply from Magnetoelastic Composites”. Nature Materials, 20, 1589 (2021).

4.   Zhao, X., Zhou, Y., Kwak, W., Li, A., Wang, S., Dallenger, M.,Chen, S., Zhang, Y.,  Lium, A., Chen, J. Areconfigurable liquid sensor for ambulatory cardiac monitoring. Nature Communications DOI:10.1038/s41467-024-52462-8 (2024).

5.    Zhao, X., Zhou, Y., Xu, J., Chen, G., Fang, Y., Tat, T., Xiao, X., Song,Y., Li, S. & Chen, J. Soft fibers with Magnetoelasticity for Wearable Electronics. Nature Communications 12,6755 (2021).

6.    Zhao, X., Nashalian, A., Ock, I.W., Popoli, S., Xu,J., Yin, J., Tat, T., Libanori, A., Chen, G., Zhou, Y. & Chen, J. A Soft
Magnetoelastic Generator for Wind-Energy Harvesting. Advanced Materials 34, e2204238 (2022).

7.    Zhao, X., Askari, H. & Chen, J. Nanogenerators for smart cities in theera of 5G and Internet of Things. Joule 5,1391-1431 (2021).

8.    Zhao, X., Li, J., Zhou, Y. & Chen, J. A soft haptic interface forprogrammable patterns of touch. Matter 5, 2590-2593 (2022).

After UVA