Page 139 - Read Online
P. 139
Page 32 of 32 Keum et al. Soft Sci 2024;4:34 https://dx.doi.org/10.20517/ss.2024.26
Adv Mater 2022;34:e2204091. DOI
139. Hwang W, Kim J, Park S, et al. A breathable and stretchable metastructure for a versatile hybrid electronic skin patch with long-term
skin comfort. Adv Mater Technol 2023;8:2200477. DOI
140. Deng Y, Xu K, Jiao R, et al. Rotating square tessellations enabled stretchable and adaptive curved display. npj Flex Electron
2024;8:291. DOI
141. Heo JS, Eom J, Kim YH, Park SK. Recent progress of textile-based wearable electronics: a comprehensive review of materials,
devices, and applications. Small 2018;14:1703034. DOI PubMed
142. Yun MJ, Sim YH, Lee DY, Cha SI. Highly stretchable large area woven, knitted and robust braided textile based interconnection for
stretchable electronics. Sci Rep 2021;11:4038. DOI PubMed PMC
143. Choi JC, Jeong HY, Sun JH, et al. Bidirectional zero poisson’s ratio elastomers with self-deformable soft mechanical metamaterials
for stretchable displays. Adv Funct Mater 2024:2406725. DOI
144. Yoo J, Ha S, Lee GH, Kim Y, Choi MK. Stretchable high-resolution user-interactive synesthesia displays for visual-acoustic
encryption. Adv Funct Mater 2023;33:2302473. DOI
145. Yang B, Zhao Y, Ali MU, et al. Asymmetrically enhanced coplanar-electrode electroluminescence for information encryption and
ultrahighly stretchable displays. Adv Mater 2022;34:e2201342. DOI PubMed
146. Kwon JH, Kim YM, Moon HC. Porous ion gel: a versatile ionotronic sensory platform for high-performance, wearable ionoskins
with electrical and optical dual output. ACS Nano 2021;15:15132-41. DOI PubMed
147. Nobeshima T, Nakakomi M, Nakamura K, Kobayashi N. Alternating-current-driven, color-tunable electrochemiluminescent cells.
Adv Opt Mater 2013;1:144-9. DOI
148. Shin S, Park YS, Cho S, et al. Effect of ion migration in electro-generated chemiluminescence depending on the luminophore types
and operating conditions. Chem Sci 2018;9:2480-8. DOI PubMed PMC
149. Moon HC, Lodge TP, Frisbie CD. Solution-processable electrochemiluminescent ion gels for flexible, low-voltage, emissive displays
on plastic. J Am Chem Soc 2014;136:3705-12. DOI PubMed
150. Kim SH, Baek GW, Yoon J, et al. A bioinspired stretchable sensory-neuromorphic system. Adv Mater 2021;33:e2104690. DOI
PubMed
151. Zhang P, Lei IM, Chen G, et al. Integrated 3D printing of flexible electroluminescent devices and soft robots. Nat Commun
2022;13:4775. DOI PubMed PMC
152. Zhao J, Lo LW, Wan H, Mao P, Yu Z, Wang C. High-speed fabrication of all-inkjet-printed organometallic halide perovskite light-
emitting diodes on elastic substrates. Adv Mater 2021;33:e2102095. DOI PubMed
153. Wang D, Hauptmann J, May C, Hofstetter YJ, Vaynzof Y, Müller T. Roll-to-roll fabrication of highly transparent Ca:Ag top-
electrode towards flexible large-area OLED lighting application. Flex Print Electron 2021;6:035001. DOI
154. Wang C, Linghu C, Nie S, et al. Programmable and scalable transfer printing with high reliability and efficiency for flexible inorganic
electronics. Sci Adv 2020;6:eabb2393. DOI PubMed PMC
155. Luo H, Wang C, Linghu C, Yu K, Wang C, Song J. Laser-driven programmable non-contact transfer printing of objects onto arbitrary
receivers via an active elastomeric microstructured stamp. Natl Sci Rev 2020;7:296-304. DOI PubMed PMC

