Advanced Fiber Materials, Volume. 6, Issue 4, 00398(2024)
An Integrated Bifunctional Pressure‒Temperature Sensing System Fabricated on a Breathable Nanofiber and Powered by Rechargeable Zinc–Air Battery for Long-Term Comfortable Health Care Monitoring
[9] [9] Min J, Demchyshyn S, Sempionatto JR, Song Y, Hailegnaw B, Xu C, Yang Y, Solomon S, Putz C, Lehner LE, Schwarz JF, Schwarzinger C, Scharber MC, Shirzaei Sani E, Kaltenbrunner M, Gao W. An autonomous wearable biosensor powered by a perovskite solar cell. Nat. Electron. 2023; 6: 630–41.
[30] [30] Liu S, Zhang W, He J, Lu Y, Wu Q, Xing M. Fabrication techniques and sensing mechanisms of textile-based strain sensors: from spatial 1D and 2D perspectives. Adv. Fiber Mater. 2024; 6: 36–67.
[54] [54] Sun B, McCay RN, Goswami S, Xu Y, Zhang C, Ling Y, Lin J, Yan Z. Gas-permeable, multifunctional on-skin electronics based on laser-induced porous graphene and sugar-templated elastomer sponges. Chem Eng J. 2018;30:1804327.
Get Citation
Copy Citation Text
Peng Wang, Gengsheng Liu, Guifen Sun, Chuizhou Meng, Guozhen Shen, Yang Li. An Integrated Bifunctional Pressure‒Temperature Sensing System Fabricated on a Breathable Nanofiber and Powered by Rechargeable Zinc–Air Battery for Long-Term Comfortable Health Care Monitoring[J]. Advanced Fiber Materials, 2024, 6(4): 00398
Category: Research Articles
Received: Nov. 28, 2023
Accepted: Feb. 19, 2024
Published Online: Nov. 14, 2024
The Author Email: Chuizhou Meng (2018108@hebut.edu.cn), Guozhen Shen (gzshen@bit.edu.cn), Yang Li (yang.li@sdu.edu.cn)