Page 115 - Read Online
P. 115

Kim et al. Soft Sci 2023;3:16  https://dx.doi.org/10.20517/ss.2023.07           Page 27 of 30

               145.      Chen Z, Kong S, He Y, et al. Soft, bistable actuators for reconfigurable 3D electronics. ACS Appl Mater Interf 2021;13:41968-77.
                    DOI
               146.      Humood M, Lefebvre J, Shi Y, et al. Fabrication and mechanical cycling of polymer microscale architectures for 3D MEMS sensors.
                    Adv Eng Mater 2019;21:1801254.  DOI
               147.      Liu F, Chen Y, Song H, et al. High performance, tunable electrically small antennas through mechanically guided 3D assembly.
                    Small 2019;15:e1804055.  DOI
               148.      Sim K, Rao Z, Li Y, Yang D, Yu C. Curvy surface conformal ultra-thin transfer printed Si optoelectronic penetrating microprobe
                    arrays. NPJ Flex Electron 2018:2.  DOI
               149.      Ko HC, Stoykovich MP, Song J, et al. A hemispherical electronic eye camera based on compressible silicon optoelectronics. Nature
                    2008;454:748-53.  DOI
               150.      Lee SW, Baek S, Park SW, et al. 3D motion tracking display enabled by magneto-interactive electroluminescence. Nat Commun
                    2020;11:6072.  DOI  PubMed  PMC
               151.      Rao Z, Lu Y, Li Z, et al. Curvy, shape-adaptive imagers based on printed optoelectronic pixels with a kirigami design. Nat Electron
                    2021;4:513-21.  DOI
               152.      Mawlong LPL, Ahn J. 3D-structured photodetectors based on 2D transition-metal dichalcogenide. Small Struct 2022;3:2100149.
                    DOI
               153.      Kim J, Salvatore GA, Araki H, et al. Battery-free, stretchable optoelectronic systems for wireless optical characterization of the skin.
                    Sci Adv 2016;2:e1600418.  DOI  PubMed  PMC
               154.      Kang S, Lee HE, Wang HS, et al. Self-powered flexible full-color display via dielectric-tuned hybrimer triboelectric nanogenerators.
                    ACS Energy Lett 2021;6:4097-107.  DOI
               155.      Lee Y, Kim BJ, Hu L, Hong J, Ahn J. Morphable 3D structure for stretchable display. Mater Today 2022;53:51-7.  DOI
               156.      Yong K, De S, Hsieh EY, Leem J, Aluru NR, Nam S. Kirigami-inspired strain-insensitive sensors based on atomically-thin materials.
                    Mater Today 2020;34:58-65.  DOI
               157.      Wang X, Guo X, Ye J, et al. Freestanding 3D mesostructures, functional devices, and shape-programmable systems based on
                    mechanically induced assembly with shape memory polymers. Adv Mater 2019;31:e1805615.  DOI
               158.      Lee W, Liu Y, Lee Y, et al. Two-dimensional materials in functional three-dimensional architectures with applications in
                    photodetection and imaging. Nat Commun 2018;9:1417.  DOI  PubMed  PMC
               159.      Kim DC, Yun H, Kim J, et al. Three-dimensional foldable quantum dot light-emitting diodes. Nat Electron 2021;4:671-80.  DOI
               160.      Li Y, Luo C, Yu K, Wang X. Remotely controlled, reversible, on-demand assembly and reconfiguration of 3D mesostructures via
                    liquid crystal elastomer platforms. ACS Appl Mater Interf 2021;13:8929-39.  DOI
               161.      Park Y, Luan H, Kwon K, et al. Transformable, freestanding 3D mesostructures based on transient materials and mechanical
                    interlocking. Adv Funct Mater 2019;29:1903181.  DOI
               162.      Azani M, Hassanpour A, Torres T. Benefits, problems, and solutions of silver nanowire transparent conductive electrodes in indium
                    tin oxide (ITO) free flexible solar cells. Adv Energy Mater 2020;10:2002536.  DOI
               163.      Heo S, Kim DH, Song YM, Lee GJ. Determining the effectiveness of radiative cooler-integrated solar cells. Adv Energy Mater
                    2022;12:2103258.  DOI
               164.      Huang S, Tang L, Najafabadi HS, Chen S, Ren Z. A highly flexible semi-tubular carbon film for stable lithium metal anodes in high-
                    performance batteries. Nano Energy 2017;38:504-9.  DOI
               165.      Lee MH, Lee J, Jung SK, et al. A biodegradable secondary battery and its biodegradation mechanism for eco-friendly energy-storage
                    systems. Adv Mater 2021;33:e2004902.  DOI
               166.      Huang I, Zhang Y, Arafa HM, et al. High performance dual-electrolyte magnesium-iodine batteries that can harmlessly resorb in the
                    environment or in the body. Energy Environ Sci 2022;15:4095-108.  DOI
               167.      Jinno H, Fukuda K, Xu X, et al. Stretchable and waterproof elastomer-coated organic photovoltaics for washable electronic textile
                    applications. Nat Energy 2017;2:780-5.  DOI
               168.      Lu L, Yang Z, Meacham K, et al. Biodegradable monocrystalline silicon photovoltaic microcells as power supplies for transient
                    biomedical implants. Adv Energy Mater 2018;8:1703035.  DOI
               169.      Chu H, Jang H, Lee Y, Chae Y, Ahn J. Conformal, graphene-based triboelectric nanogenerator for self-powered wearable electronics.
                    Nano Energy 2016;27:298-305.  DOI
               170.      Tao K, Yi H, Yang Y, et al. Origami-inspired electret-based triboelectric generator for biomechanical and ocean wave energy
                    harvesting. Nano Energy 2020;67:104197.  DOI
               171.      Gong X, Yang Q, Zhi C, Lee PS. Stretchable energy storage devices: from materials and structural design to device assembly. Adv
                    Energy Mater 2021;11:2003308.  DOI
               172.      Han M, Wang H, Yang Y, et al. Three-dimensional piezoelectric polymer microsystems for vibrational energy harvesting, robotic
                    interfaces and biomedical implants. Nat Electron 2019;2:26-35.  DOI
               173.      Kim YG, Hong S, Hwang B, Ahn SH, Song JH. Improved performance of stretchable piezoelectric energy harvester based on stress
                    rearrangement. Sci Rep 2022;12:19149.  DOI
               174.      Yang C, Wu X, Xia H, et al. 3D printed template-assisted assembly of additive-free Ti C T  MXene microlattices with customized
                                                                             3  2  x
                    structures toward high areal capacitance. ACS Nano 2022;16:2699-710.  DOI
               175.      Xia X, Afshar A, Yang H, et al. Electrochemically reconfigurable architected materials. Nature 2019;573:205-13.  DOI
   110   111   112   113   114   115   116   117   118   119   120