Page 51 - Read Online
P. 51
Page 38 of 38 Zhu et al. Soft Sci 2024;4:17 https://dx.doi.org/10.20517/ss.2024.05
robotics. Sci Robot 2018;3:eaau6914. DOI
222. Zhu L, Wang Y, Mei D, et al. Large-area hand-covering elastomeric electronic skin sensor with distributed multifunctional sensing
capability. Adv Intell Syst 2022;4:2100118. DOI
223. Zhang C, Liu S, Huang X, Guo W, Li Y, Wu H. A stretchable dual-mode sensor array for multifunctional robotic electronic skin.
Nano Energy 2019;62:164-70. DOI
224. Zhang L, He J, Liao Y, et al. A self-protective, reproducible textile sensor with high performance towards human-machine
interactions. J Mater Chem A 2019;7:26631-40. DOI
225. Lu C, Wang X, Shen Y, et al. Skin-like transparent, high resilience, low hysteresis, fatigue-resistant cellulose-based eutectogel for
self-powered e-skin and human-machine interaction. Adv Funct Mater 2024;34:2311502. DOI
226. Liu W, Xiang F, Mei D, Wang Y. A flexible dual-mode capacitive sensor for highly sensitive touchless and tactile sensing in human-
machine interactions. Adv Mater Technol 2024;9:2301685. DOI
227. Osborn LE, Dragomir A, Betthauser JL, et al. Prosthesis with neuromorphic multilayered e-dermis perceives touch and pain. Sci
Robot 2018;3:10. DOI PubMed PMC
228. Yang M, Cheng Y, Yue Y, et al. High-performance flexible pressure sensor with a self-healing function for tactile feedback. Adv Sci
2022;9:e2200507. DOI PubMed PMC
229. Luo S, Zhou X, Tang X, et al. Microconformal electrode-dielectric integration for flexible ultrasensitive robotic tactile sensing. Nano
Energy 2021;80:105580. DOI
230. Yang JY, Kumar A, Shaikh MO, et al. Biocompatible, antibacterial, and stable deep eutectic solvent-based ionic gel multimodal
sensors for healthcare applications. ACS Appl Mater Interfaces 2023;15:55244-57. DOI
231. Peng Z, Zhu C, Zhang X, Zhang L. Advancing the pressure sensing performance and biocompatible of conductive rGO/PEDOT/
PDMS composite film for simple and efficient pressure sensor. Smart Mater Struct 2023;32:125020. DOI
232. Wan S, Zhu Z, Yin K, et al. A highly skin-conformal and biodegradable graphene-based strain sensor. Small Methods
2018;2:1700374. DOI
233. Wang Y, Zhang L, Lu A. Highly stretchable, transparent cellulose/PVA composite hydrogel for multiple sensing and triboelectric
nanogenerators. J Mater Chem A 2020;8:13935-41. DOI
234. Wang C, Hwang D, Yu Z, et al. User-interactive electronic skin for instantaneous pressure visualization. Nat Mater 2013;12:899-904.
DOI
235. Zhang Z, Wang Y, Jia S, Fan C. Body-conformable light-emitting materials and devices. Nat Photon 2024;18:114-26. DOI
236. Cheng Y, Li L, Meredith CH, et al. Photoluminescent humidity sensors based on droplet-enabled porous composite gels. ACS Mater
Lett 2023;5:2074-83. DOI
237. Tan D, Xu B, Chung KY, et al. Self-adhesive, detach-on-demand, and waterproof hydrophobic electronic skins with customized
functionality and wearability. Adv Funct Mater 2024;34:2311457. DOI
238. Lin J, Cai X, Liu Z, et al. Anti-liquid-interfering and bacterially antiadhesive strategy for highly stretchable and ultrasensitive strain
sensors based on cassie-baxter wetting state. Adv Funct Mater 2020;30:2000398. DOI
239. Pan X, Wang Q, Guo R, et al. An integrated transparent, UV-filtering organohydrogel sensor via molecular-level ion conductive
channels. J Mater Chem A 2019;7:4525-35. DOI
240. Cai J, Li J, Chen X, Wang M. Multifunctional polydimethylsiloxane foam with multi-walled carbon nanotube and thermo-expandable
microsphere for temperature sensing, microwave shielding and piezoresistive sensor. Chem Eng J 2020;393:124805. DOI
241. Wei W, Yi Y, Song J, Chen X, Li J, Li J. Tunable graphene/nitrocellulose temperature alarm sensors. ACS Appl Mater Interfaces
2022;14:13790-800. DOI PubMed PMC
242. Tan D, Xu B. Advanced interfacial design for electronic skins with customizable functionalities and wearability. Adv Funct Mater
2023;33:2306793. DOI
243. Huang C, Chiu C. Facile fabrication of a stretchable and flexible nanofiber carbon film-sensing electrode by electrospinning and its
application in smart clothing for ECG and EMG monitoring. ACS Appl Electron Mater 2021;3:676-86. DOI
244. Li C, Zhao W. Progress in the brain-computer interface: an interview with Bin He. Natl Sci Rev 2020;7:480-3. DOI PubMed PMC
245. Venkatesh, Kavya, Keerthi R, Ikshu B, Badarish IT. Neuralink and brain control machine. IJARSCT 2022;2. Available from: https://
ijarsct.co.in/Paper3135.pdf. [Last accessed on 7 May 2024].

