Page 31 - Read Online
P. 31

Huang et al. Soft Sci 2024;4:40  https://dx.doi.org/10.20517/ss.2024.37         Page 29 of 35

                    challenges and opportunities. Electronics 2014;3:314-38.  DOI
               40.       Castano LM, Flatau AB. Smart fabric sensors and e-textile technologies: a review. Smart Mater Struct 2014;23:053001.  DOI
               41.       Stoppa M, Chiolerio A. Wearable electronics and smart textiles: a critical review. Sensors 2014;14:11957-92.  DOI  PubMed  PMC
               42.       Lin Z, Yang J, Li X, et al. Large-scale and washable smart textiles based on triboelectric nanogenerator arrays for self-powered
                    sleeping monitoring. Adv Funct Mater 2018;28:1704112.  DOI
               43.       Jin H, Matsuhisa N, Lee S, Abbas M, Yokota T, Someya T. Enhancing the performance of stretchable conductors for e-textiles by
                    controlled ink permeation. Adv Mater 2017;29:1605848.  DOI  PubMed
               44.       Bai W, Zhai J, Zhou S, et al. Flexible smart wearable Co@C@carbon fabric for efficient electromagnetic shielding, thermal therapy,
                    and human movement monitoring. Ind Eng Chem Res 2022;61:11825-39.  DOI
               45.       Fan W, He Q, Meng K et al. Machine-knitted washable sensor array textile for precise epidermal physiological signal monitoring. Sci
                    Adv 2020;6:eaay2840.  DOI  PubMed  PMC
               46.       Jeong S, Lee Y, Lee M, Song WJ, Park J, Sun J. Accelerated wound healing with an ionic patch assisted by a triboelectric
                    nanogenerator. Nano Energy 2021;79:105463.  DOI
               47.       Wang L, Wang L, Zhang Y, et al. Weaving sensing fibers into electrochemical fabric for real-time health monitoring. Adv Funct
                    Mater 2018;28:1804456.  DOI
               48.       Khozouie N, Malekhoseini R. Pregnancy healthcare monitoring system: a review. Smart Health 2024;31:100433.  DOI
               49.       Hu X, Chen Y, Wang X, et al. Wearable and regenerable electrochemical fabric sensing system based on molecularly imprinted
                    polymers for real-time stress management. Adv Funct Mater 2024;34:2312897.  DOI
               50.       Liu L, Li J, Tian Z, et al. Self-powered porous polymer sensors with high sensitivity for machine learning-assisted motion and
                    rehabilitation monitoring. Nano Energy 2024;128:109817.  DOI
               51.       Yang Y, Wei X, Zhang N, et al. A non-printed integrated-circuit textile for wireless theranostics. Nat Commun 2021;12:4876.  DOI
                    PubMed  PMC
               52.       Peng Y, Dong J, Sun J, et al. Multimodal health monitoring via a hierarchical and ultrastretchable all-in-one electronic textile. Nano
                    Energy 2023;110:108374.  DOI
               53.       Zhao Z, Yan C, Liu Z, et al. Machine-washable textile triboelectric nanogenerators for effective human respiratory monitoring
                    through loom weaving of metallic yarns. Adv Mater 2016;28:10267-74.  DOI  PubMed
               54.       Islam MR, Afroj S, Yin J, Novoselov KS, Chen J, Karim N. Advances in printed electronic textiles. Adv Sci 2024;11:e2304140.  DOI
                    PubMed  PMC
               55.       Cesano F, Uddin MJ, Lozano K, Zanetti M, Scarano D. All-carbon conductors for electronic and electrical wiring applications. Front
                    Mater 2020;7:219.  DOI
               56.       Dang C, Wang Z, Hughes-Riley T, et al. Fibres-threads of intelligence-enable a new generation of wearable systems. Chem Soc Rev
                    2024;53:8790-846.  DOI  PubMed
               57.       Boumegnane A, Nadi A, Cherkaoui O, Tahiri M. Inkjet printing of silver conductive ink on textiles for wearable electronic
                    applications. Mater Today Proc 2022;58:1235-41.  DOI
               58.       Smith AA, Li R, Xu L, Tse ZTH. A narrative review of in-textile sensors in human health applications. Adv Mater Technol
                    2024;9:2302141.  DOI
               59.       Jones CF, Resina L, Ferreira FC, Sanjuan-alberte P, Esteves T. Conductive core–shell nanoparticles: synthesis and applications. J
                    Phys Chem C 2024;128:11083-100.  DOI
               60.       Wei S, Wang Q, Zhu J, Sun L, Lin H, Guo Z. Multifunctional composite core-shell nanoparticles. Nanoscale 2011;3:4474-502.  DOI
                    PubMed
               61.       Ala O, Fan Q. Applications of conducting polymers in electronic textiles. Res J Text Apparel 2009;13:51-68.  DOI
               62.       Angelopoulos M. Conducting polymers in microelectronics. IBM J Res Dev 2001;45:57-75.  DOI
               63.       Lekpittaya P, Yanumet N, Grady BP, O’Rear EA. Resistivity of conductive polymer–coated fabric. J Appl Polym Sci 2004;92:2629-
                    36.  DOI
               64.       Wallace GG, Campbell TE, Innis PC. Putting function into fashion: organic conducting polymer fibres and textiles. Fibers Polym
                    2007;8:135-42.  DOI
               65.       Kim HK, Kim MS, Chun SY, et al. Characteristics of electrically conducting polymer-coated textiles. Mol Cryst Liq Cryst
                    2003;405:161-9.  DOI
               66.       Seidel JM, Malmonge SM. Synthesis of polyHEMA hydrogels for using as biomaterials. Bulk and solution radical-initiated
                    polymerization techniques. Mat Res 2000;3:79-83.  DOI
               67.       Shang J, Shao Z, Chen X. Electrical behavior of a natural polyelectrolyte hydrogel: chitosan/carboxymethylcellulose hydrogel.
                    Biomacromolecules 2008;9:1208-13.  DOI
               68.       Guiseppi-Elie A. Electroconductive hydrogels: synthesis, characterization and biomedical applications. Biomaterials 2010;31:2701-
                    16.  DOI  PubMed
               69.       Frutiger A, Muth JT, Vogt DM, et al. Capacitive soft strain sensors via multicore-shell fiber printing. Adv Mater 2015;27:2440-6.
                    DOI  PubMed
               70.       Agcayazi T, Chatterjee K, Bozkurt A, Ghosh TK. Flexible interconnects for electronic textiles. Adv Mater Technol 2018;3:1700277.
                    DOI
               71.       Mokhtar SMA, Alvarez de Eulate E, Yamada M, Prow TW, Evans DR. Conducting polymers in wearable devices. Med Devices Sens
   26   27   28   29   30   31   32   33   34   35   36