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An Ionic Hydrogel-Based Antifreezing Triboelectric Nanogenerator

https://labs.utsouthwestern.edu/sites/default/files/2025-11/Ying-ACS%20Elecrtonics%20materials-2022.pdf

An Ionic Hydrogel-Based Antifreezing Triboelectric Nanogenerator Binbin Ying, Runze Zuo, Yilun Wan, and Xinyu Liu* Cite This: ACS Appl. Electron. Mater. 2022, 4, 1930−1938 Read Online ACCESS Metrics & More Article Recommendations *sı Supporting Information ABSTRACT: The rapid development of stretc…

An Anti‐Freezing, Ambient‐Stable and Highly Stretchable Ionic Skin with Strong Surface Adhesion for Wearable Sensing and Soft Robotics

https://labs.utsouthwestern.edu/sites/default/files/2025-11/Ying-Adv%20Funct%20Materials-2021.pdf

www.afm-journal.de © 2021 Wiley-VCH GmbH2104665  (1 of 16) Research Article An Anti-Freezing, Ambient-Stable and Highly Stretchable Ionic Skin with Strong Surface Adhesion for Wearable Sensing and Soft Robotics Binbin Ying, Ryan Zeyuan Chen, Runze Zuo, Jianyu Li, and Xinyu Liu* Natural living …

Recent advances in nano- and micro-scale carrier systems for controlled delivery of vaccines

https://labs.utsouthwestern.edu/sites/default/files/2025-11/Wang-Biomaterials-2023.pdf

Biomaterials 303 (2023) 122345 Available online 16 October 2023 0142-9612/© 2023 Published by Elsevier Ltd. Recent advances in nano- and micro-scale carrier systems for controlled delivery of vaccines Erika Yan Wang a,1, Morteza Sarmadi a,1, Binbin Ying a,b,c,1, Ana Jaklenec a,*, Robert Langer a…

Molecular basis of cooperativity in pH-triggered supramolecular self-assembly

https://labs.utsouthwestern.edu/sites/default/files/2022-08/114_Li_natcomm.pdf

ARTICLE Received 23 May 2016 | Accepted 13 Sep 2016 | Published 27 Oct 2016 Molecular basis of cooperativity in pH-triggered supramolecular self-assembly Yang Li1, Tian Zhao1, Chensu Wang1,2, Zhiqiang Lin1, Gang Huang1, Baran D. Sumer3 & Jinming Gao1 Supramolecular self-assembly offers a powerful …

A Nanocellulose‐Paper‐Based SERS Multiwell Plate with High Sensitivity and High Signal Homogeneity

https://labs.utsouthwestern.edu/sites/default/files/2025-11/Chen-Adv%20Materials%20Inter-2019.pdf

www.advmatinterfaces.de 1901346  (1 of 10) © 2019 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Full Paper A Nanocellulose-Paper-Based SERS Multiwell Plate with High Sensitivity and High Signal Homogeneity Longyan Chen, Binbin Ying, Pengfei Song, and Xinyu Liu* DOI: 10.1002/admi.201901346 1. Int…

An ambient-stable and stretchable ionic skin with multimodal sensation

https://labs.utsouthwestern.edu/sites/default/files/2025-11/Ying-MaterHorizons-2020.pdf

This journal is©The Royal Society of Chemistry 2020 Mater. Horiz., 2020, 7, 477--488 | 477 Cite this:Mater. Horiz., 2020, 7, 477 An ambient-stable and stretchable ionic skin with multimodal sensation† Binbin Ying, ab Qiyang Wu, ab Jianyu Li *bc and Xinyu Liu *abd Skin serves as a physical and hy…

A Better Way to Visualize the Cervix: A Low-Cost Cervical Cancer Screening Device for LMIC Settings

https://labs.utsouthwestern.edu/sites/default/files/2025-11/Barsukova-Jof%20Medical%20Devices-2025.pdf

Anita Dey Barsukova1 MIT Department of Mechanical Engineering, Cambridge, MA 02139 e-mail: anitadb1@mit.edu Ahmad Mujtaba Jebran1 MIT Department of Mechanical Engineering, Cambridge, MA 02139 e-mail: jebran@mit.edu Naomi Lynch MIT Department of Mechanical Engineering, Cambridge, MA 02139 e-ma…

Skin-like hydrogel devices for wearable sensing, soft robotics and beyond

https://labs.utsouthwestern.edu/sites/default/files/2025-11/Ying-iScience-2021_0.pdf

ll OPEN ACCESS iScience Review Skin-like hydrogel devices for wearable sensing, soft robotics and beyond Binbin Ying1,2,4 and Xinyu Liu1,3,* 1Department of Mechanical and Industrial Engineering, University of Toronto, 5 King’s College Road, Toronto, ON M5S 3G8, Canada 2Department of Mechanical Engi…

NanoPADs and nanoFACEs: an optically transparent nanopaper-based device for biomedical applications

https://labs.utsouthwestern.edu/sites/default/files/2025-11/Ying-LabChip-2020.pdf

Showcasing research from the Microfl uidics and BioMEMS Laboratory of Professor Xinyu Liu, Department of Mechanical and Industrial Engineering, University of Toronto, Canada. NanoPADs and nanoFACEs: an optically transparent nanopaper-based device for biomedical applications Nanopaper-based anal…