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Page 32 of 34                             Bai et al. Soft Sci 2023;3:40  https://dx.doi.org/10.20517/ss.2023.38

                    for flexible lithium-ion batteries. Electrochimica Acta 2022;425:140721.  DOI
               151.      Lou Y, Liu H, Zhang J. Liquid metals in plastics for super-toughness and high-performance force sensors. Chem Eng J
                    2020;399:125732.  DOI
               152.      Xu C, Zheng Z, Lin M, et al. Strengthened, antibacterial, and conductive flexible film for humidity and strain sensors. ACS Appl
                    Mater Interfaces 2020;12:35482-92.  DOI
               153.      Lei D, Zhang H, Liu N, et al. Tensible and flexible high-sensitive spandex fiber strain sensor enhanced by carbon nanotubes/Ag
                    nanoparticles. Nanotechnology 2021;32:505509.  DOI
               154.      Xu S, Zong Y, Ma J, Liu L. A multifunctional skin-like sensor based on liquid metal activated gelatin organohydrogel. Adv Mater
                    Interfaces 2022;9:2201212.  DOI
               155.      Huang Y, Yang F, Liu S, Wang R, Guo J, Ma X. Liquid metal-based epidermal flexible sensor for wireless breath monitoring and
                    diagnosis enabled by highly sensitive SnS  nanosheets. Research 2021;2021:9847285.  DOI
                                               2
               156.      Chi Y, Han J, Zheng J, et al. Insights into the interfacial contact and charge transport of gas-sensing liquid metal marbles. ACS Appl
                    Mater Interfaces 2022;14:30112-23.  DOI
               157.      Schlingman K, D’amaral GM, Carmichael RS, Carmichael TB. Intrinsically conductive liquid metal-elastomer composites for
                    stretchable and flexible electronics. Adv Mater Technol 2023;8:2200374.  DOI
               158.      Lopes PA, Fernandes DF, Silva AF, et al. Bi-phasic Ag-In-Ga-embedded elastomer inks for digitally printed, ultra-stretchable, multi-
                    layer electronics. ACS Appl Mater Interfaces 2021;13:14552-61.  DOI
               159.      Pan X, Guo D, He H. Novel conductive polymer composites based on CNTs/CNFs bridged liquid metal. J Phys D Appl Phys
                    2021;54:085401.  DOI
               160.      Lu Y, Lin Y, Chen Z, et al. Enhanced endosomal escape by light-fueled liquid-metal transformer. Nano Lett 2017;17:2138-45.  DOI
               161.      Xu J, Wang Z, You J, et al. Polymerization of moldable self-healing hydrogel with liquid metal nanodroplets for flexible strain-
                    sensing devices. Chem Eng J 2020;392:123788.  DOI
               162.      Li Y, Feng S, Cao S, Zhang J, Kong D. Printable liquid metal microparticle ink for ultrastretchable electronics. ACS Appl Mater
                    Interfaces 2020;12:50852-9.  DOI
               163.      Chiu SH, Baharfar M, Chi Y, et al. Exploring electrical conductivity of thiolated micro- and nanoparticles of gallium. Adv Intell Syst
                    2023;5:2200364.  DOI
               164.      Hou Y, Lu C, Dou M, et al. Soft liquid metal nanoparticles achieve reduced crystal nucleation and ultrarapid rewarming for human
                    bone marrow stromal cell and blood vessel cryopreservation. Acta Biomater 2020;102:403-15.  DOI
               165.      Idrus-Saidi SA, Tang J, Yang J, et al. Liquid metal-based route for synthesizing and tuning gas-sensing elements. ACS Sens
                    2020;5:1177-89.  DOI
               166.      Hoshyargar F, Khan H, Kalantar-zadeh K, O’Mullane AP. Generation of catalytically active materials from a liquid metal precursor.
                    Chem Commun 2015;51:14026-9.  DOI  PubMed
               167.      Liang S, Wang C, Li F, Song G. Supported Cu/W/Mo/Ni - liquid metal catalyst with core-shell structure for photocatalytic
                    degradation. Catalysts 2021;11:1419.  DOI
               168.     Zhang W, Ou JZ, Tang SY, et al. Liquid metal/metal oxide frameworks. Adv Funct Mater 2014;24:3799-807.  DOI
               169.     Sivan V, Tang SY, O’Mullane AP, et al. Liquid metal marbles. Adv Funct Materials 2013;23:144-52.  DOI
               170.      Nucciarelli F, Bravo I, Vázquez L, Lorenzo E, Pau JL. Gallium nanoparticles colloids synthesis for UV bio-optical sensors. Optical
                    Sensors 2017;10231:407-13.  DOI
               171.      Boley JW, White EL, Kramer RK. Mechanically sintered gallium-indium nanoparticles. Adv Mater 2015;27:2355-60.  DOI  PubMed
               172.      Zhang P, Wang Q, Guo R, et al. Self-assembled ultrathin film of CNC/PVA-liquid metal composite as a multifunctional Janus
                    material. Mater Horiz 2019;6:1643-53.  DOI
               173.      Wu P, Zhou L, Lv S, Fu J, He Y. Self-sintering liquid metal ink with LAPONITE® for flexible electronics. J Mater Chem C
                    2021;9:3070-80.  DOI
               174.      Li X, Li M, Zong L, et al. Liquid metal droplets wrapped with polysaccharide microgel as biocompatible aqueous ink for flexible
                    conductive devices. Adv Funct Mater 2018;28:1804197.  DOI
               175.      Liu Y, Wang Q, Bi S, Zhang W, Zhou H, Jiang X. Water-processable liquid metal nanoparticles by single-step polymer
                    encapsulation. Nanoscale 2020;12:13731-41.  DOI
               176.      Liu S, Yuen MC, White EL, et al. Laser sintering of liquid metal nanoparticles for scalable manufacturing of soft and flexible
                    electronics. ACS Appl Mater Interfaces 2018;10:28232-41.  DOI
               177.      Liu S, Kim SY, Henry KE, Shah DS, Kramer-Bottiglio R. Printed and laser-activated liquid metal-elastomer conductors enabled by
                    ethanol/PDMS/liquid metal double emulsions. ACS Appl Mater Interfaces 2021;13:28729-36.  DOI  PubMed
               178.      Zheng L, Zhu M, Wu B, Li Z, Sun S, Wu P. Conductance-stable liquid metal sheath-core microfibers for stretchy smart fabrics and
                    self-powered sensing. Sci Adv 2021;7:eabg4041.  DOI  PubMed  PMC
               179.      Ning C, Wei C, Sheng F, et al. Scalable one-step wet-spinning of triboelectric fibers for large-area power and sensing textiles. Nano
                    Res 2023;16:7518-26.  DOI
               180.      Zhang M, Li G, Huang L, et al. Versatile fabrication of liquid metal nano-ink based flexible electronic devices. Appl Mater Today
                    2021;22:100903.  DOI
               181.      Zhang Q, Gao Y, Liu J. Atomized spraying of liquid metal droplets on desired substrate surfaces as a generalized way for ubiquitous
                    printed electronics. Appl Phys A 2014;116:1091-7.  DOI
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