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Paper Publications
[1]Xiong, Z., Chen, Y., Xu, P., Chen, C., Xie, Y., Chang, Y., Pan, T. and Liu, K., Regional-Controlled Tissue Expanders Increase Skin Expansion and Thickness Compared to Standard Tissue Expanders in a Rat Model. Plastic and Reconstructive Surgery, 2022, 150(6), 1273-1284..
[2]Zhao, C., Pan, B., Wang, M., Si, Y., Taha, A. Y., Liu, G., Pan, T. and Sun, G., Improving the Sensitivity of Nanofibrous Membrane-Based ELISA for On-Site Antibiotics Detection. ACS sensors, 2022, 7(5), 1458-1466..
[3]Ma, T., Wang, Y., Sun, S., Pan, T., Li, B. and Chu, J.,Size-tunable droplet microfluidic system using an on-chip microfluidic peristaltic pump. Sensors and Actuators A: Physical, 2022, 334, 113332..
[4]Zhang, Y., Xu, G., Wu, J., Lee, R.M., Zhu, Z., Sun, Y., Zhu, K., Losert, W., Liao, S., Zhang, G. and Pan, T., 2022. Propagation dynamics of electrotactic motility in large epithelial cell sheets. Iscience, 25(10), p.105136. .
[5]S. Li, N. Pan, Z. Zhu, R. Li, B. Li, J. Chu, G. Li, Y. Chang*, T. Pan*, All-in-One Iontronic Sensing Paper, Adv. Funct. Mater. 2019, 29(11), 1807343. (Featured as a Cover Image).
[6]Z. Fang, Y. Ding, Z. Zhang, F. Wang, Z. Wang, H. Wang, T. Pan* , Digital Microfluidic Meter-on-Chip, Lab Chip 2019, 20, 722-733. (Featured as a Cover Image).
[7]Y. Chang, L. Wang, R. Li, Z. Zhang, Q. Wang, J. Yang, C. Guo *, T. Pan*, First Decade of Interfacial Iontronic Sensing: From DropletSensors to Artificial Skins. Adv. Mater. 33, 20364..
[8]C. Zhou#, J. Shim#, Z. Fang, C. Meyer, T. Gong, M. Wong, C. Tan*, T. Pan*, Microfluidic Printing-Based Method for the Multifactorial Study of Cell-Free Protein Networks. Anal. Chem. 2022, 94, 31, 11038–11046..
[9]J. Tang, C. Zhao, Q. Luo, Y. Chang*, Z. Yang*, T. Pan*, Ultrahigh-transparency and pressure-sensitive iontronic device for tactile intelligence. npj Flex. Electron. 2022, 6..
[10]Y. Cheng#, C. Guo, S#. Li, K. Deng, J. Tang, Q. Luo, S. Zhang, Y. Chang*, T. Pan*, Aquatic Skin Enabled by Multi-Modality Iontronic Sensing. Adv. Funct. Mater. 2022, 2205947. .
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