Page 48 - Read Online
P. 48
Li et al. Soft Sci. 2025, 5, 13 https://dx.doi.org/10.20517/ss.2024.60 Page 11 of 11
31. Wang, F.; Chen, J.; Cui, X.; Liu, X.; Chang, X.; Zhu, Y. Wearable ionogel-based fibers for strain sensors with ultrawide linear
response and temperature sensors insensitive to strain. ACS. Appl. Mater. Interfaces. 2022, 14, 30268-78. DOI PubMed
32. Zhang, Y.; Hu, Z.; Xiang, H.; Zhai, G.; Zhu, M. Fabrication of visual textile temperature indicators based on reversible thermochromic
fibers. Dyes. Pigm. 2019, 162, 705-11. DOI
33. Li, F.; Xue, H.; Lin, X.; Zhao, H.; Zhang, T. Wearable temperature sensor with high resolution for skin temperature monitoring. ACS.
Appl. Mater. Interfaces. 2022, 14, 43844-52. DOI
34. Lee, J.; Kim, D. W.; Chun, S.; et al. Intrinsically strain-insensitive, hyperelastic temperature-sensing fiber with compressed micro-
wrinkles for integrated textronics. Adv. Mater. Technol. 2020, 5, 2000073. DOI
35. Gui, Q.; He, Y.; Gao, N.; Tao, X.; Wang, Y. A skin-inspired integrated sensor for synchronous monitoring of multiparameter signals.
Adv. Funct. Mater. 2017, 27, 1702050. DOI
36. Zhang, H.; Zhang, S.; Zhang, X. Experimental discovery of magnetoresistance and its memory effect in methylimidazolium-type iron-
containing ionic liquids. Chem. Mater. 2016, 28, 8710-4. DOI
37. Sangoro, J. R.; Serghei, A.; Naumov, S.; et al. Charge transport and mass transport in imidazolium-based ionic liquids. Phys. Rev. E.
2008, 77, 051202. DOI
38. Ge, G.; Lu, Y.; Qu, X.; et al. Muscle-inspired self-healing hydrogels for strain and temperature sensor. ACS. Nano. 2020, 14, 218-28.
DOI
39. Wang, Y.; Ai, X.; Lu, S.; Xing, T.; Qi, N.; Chen, G. Fabrication of a type of silk/PEDOT conductive fibers for wearable sensor.
Colloid. Surface. A. 2021, 625, 126909. DOI

