Page 28 - Read Online
P. 28

Xiao et al. Soft Sci 2023;3:11  https://dx.doi.org/10.20517/ss.2023.03          Page 25 of 26

               125.      Ford MJ, Ambulo CP, Kent TA, et al. A multifunctional shape-morphing elastomer with liquid metal inclusions. Proc Natl Acad Sci
                    USA 2019;116:21438-44.  DOI  PubMed  PMC
               126.      Davidson ZS, Shahsavan H, Aghakhani A, et al. Monolithic shape-programmable dielectric liquid crystal elastomer actuators. Sci Adv
                    2019;5:eaay0855.  DOI  PubMed  PMC
               127.      Harris KD, Bastiaansen CW, Lub J, Broer DJ. Self-assembled polymer films for controlled agent-driven motion. Nano Lett
                    2005;5:1857-60.  DOI  PubMed
               128.      Haan LT, Verjans JM, Broer DJ, Bastiaansen CW, Schenning AP. Humidity-responsive liquid crystalline polymer actuators with an
                    asymmetry in the molecular trigger that bend, fold, and curl. J Am Chem Soc 2014;136:10585-8.  DOI
               129.      Abadia AV, Herbert KM, White TJ, Schwartz DK, Kaar JL. Biocatalytic 3D actuation in liquid crystal elastomers via enzyme
                    patterning. ACS Appl Mater Interf ;2022:26480-8.  DOI
               130.      Michal BT, Mckenzie BM, Felder SE, Rowan SJ. Metallo-, thermo-, and photoresponsive shape memory and actuating liquid
                    crystalline elastomers. Macromolecules 2015;48:3239-46.  DOI
               131.      Harris KD, Bastiaansen CWM, Broer DJ. Physical properties of anisotropically swelling hydrogen-bonded liquid crystal polymer
                    actuators. J Microelectromech Syst 2007;16:480-8.  DOI
               132.      Boothby JM, Kim H, Ware TH. Shape changes in chemoresponsive liquid crystal elastomers. Sens Actuators B Chem 2017;240:511-
                    8.  DOI
               133.      Zhang J, Guo Y, Hu W, Soon RH, Davidson ZS, Sitti M. Liquid crystal elastomer-based magnetic composite films for reconfigurable
                    shape-morphing soft miniature machines. Adv Mater 2021;33:e2006191.  DOI
               134.      Herrera-Posada S, Mora-Navarro C, Ortiz-Bermudez P, et al. Magneto-responsive liquid crystalline elastomer nanocomposites as
                    potential candidates for dynamic cell culture substrates. Mater Sci Eng C Mater Biol Appl 2016;65:369-78.  DOI
               135.      Zhang J, Guo Y, Hu W, Sitti M. Wirelessly actuated thermo- and magneto-responsive soft bimorph materials with programmable
                    shape-morphing. Adv Mater 2021;33:e2100336.  DOI
               136.      Zeng H, Wani OM, Wasylczyk P, Priimagi A. Light-driven, caterpillar-inspired miniature inching robot. Macromol Rapid Commun
                    2018;39:1700224.  DOI  PubMed
               137.      Rogóż M, Dradrach K, Xuan C, Wasylczyk P. A millimeter-scale snail robot based on a light-powered liquid crystal elastomer
                    continuous actuator. Macromol Rapid Commun 2019;40:e1900279.  DOI  PubMed
               138.      Zeng H, Wasylczyk P, Parmeggiani C, Martella D, Burresi M, Wiersma DS. Light-fueled microscopic walkers. Adv Mater
                    2015;27:3883-7.  DOI  PubMed  PMC
               139.      Hu J, Nie Z, Wang M, Liu Z, Huang S, Yang H. Springtail-inspired light-driven soft jumping robots based on liquid crystal
                    elastomers with monolithic three-leaf panel fold structure. Angew Chem Int Ed Engl 2023;62:e202218227.  DOI
               140.      Zhao Y, Hong Y, Qi F, Chi Y, Su H, Yin J. Self-sustained snapping drives autonomous dancing and motion in free-standing wavy
                    rings. Adv Mater 2023;35:e2207372.  DOI
               141.      Martella D, Nocentini S, Nuzhdin D, Parmeggiani C, Wiersma DS. Photonic microhand with autonomous action. Adv Mater
                    2017;29:1704047.  DOI  PubMed
               142.      Huang Y, Bisoyi HK, Huang S, et al. Bioinspired synergistic photochromic luminescence and programmable liquid crystal actuators.
                    Angew Chem Int Ed Engl 2021;60:11247-51.  DOI
               143.      Lyu P, Astam MO, Sánchez-somolinos C, Liu D. Robotic pick-and-place operations in multifunctional liquid crystal elastomers. Adv
                    Intell Syst 2022;4:2200280.  DOI
               144.      Potekhina A, Wang C. Liquid crystal elastomer based thermal microactuators and photothermal microgrippers using lateral bending
                    beams. Adv Mater Technol 2022;7:2101732.  DOI
               145.      Tian H, Liu H, Shao J, Li S, Li X, Chen X. An electrically active gecko-effect soft gripper under a low voltage by mimicking gecko’s
                    adhesive structures and toe muscles. Soft Matter 2020;16:5599-608.  DOI
               146.      De Bellis I, Ni B, Martella D, et al. Color modulation in morpho butterfly wings using liquid crystalline elastomers. Adv Intell Syst
                    2020;2:2000035.  DOI
               147.      Shi Y, Zhu C, Li J, Wei J, Guo J. A color-changing plasmonic actuator based on silver nanoparticle array/liquid crystalline elastomer
                    nanocomposites. New J Chem 2016;40:7311-9.  DOI
               148.      Zhang P, de Haan LT, Debije MG, Schenning APHJ. Liquid crystal-based structural color actuators. Light Sci Appl 2022;11:248.
                    DOI  PubMed  PMC
               149.      Liu Z, Bisoyi HK, Huang Y, Wang M, Yang H, Li Q. Thermo- and mechanochromic camouflage and self-healing in biomimetic soft
                    actuators based on liquid crystal elastomers. Angew Chem Int Ed Engl 2022;61:e202115755.  DOI
               150.      Joralmon D, Alfarhan S, Kim S, Tang T, Jin K, Li X. Three-dimensional printing of liquid crystals with thermal sensing capability
                    via multimaterial vat photopolymerization. ACS Appl Polym Mater 2022;4:2951-9.  DOI
               151.      Wei W, Gao J, Yang J, Wei J, Guo J. A NIR light-triggered pyroelectric-dominated generator based on a liquid crystal elastomer
                    composite actuator for photoelectric conversion and self-powered sensing. RSC Adv 2018;8:40856-65.  DOI  PubMed  PMC
               152.      Liao W, Yang Z. The integration of sensing and actuating based on a simple design fiber actuator towards intelligent soft robots. Adv
                    Mater Technol 2022;7:2101260.  DOI
               153.      Shaha RK, Merkel DR, Anderson MP, et al. Biocompatible liquid-crystal elastomers mimic the intervertebral disc. J Mech Behav
                    Biomed Mater 2020;107:103757.  DOI
               154.      Hussain S, Park SY. Photonic cholesteric liquid-crystal elastomers with reprogrammable helical pitch and handedness. ACS Appl
   23   24   25   26   27   28   29   30   31   32   33