Page 52 - Read Online
P. 52
Yun et al. Soft Sci 2023;3:12 https://dx.doi.org/10.20517/ss.2023.04 Page 23 of 23
124. Wang C, Hua L, Yan H, Li B, Tu Y, Wang R. A thermal management strategy for electronic devices based on moisture sorption-
desorption processes. Joule 2020;4:435-47. DOI
125. Férey G, Mellot-Draznieks C, Serre C, et al. A chromium terephthalate-based solid with unusually large pore volumes and surface
area. Science 2005;309:2040-2. DOI
126. Zhang Z, Wang X, Yan Y. A review of the state-of-the-art in electronic cooling. e-Prime Adv Electr Eng Electron Energy
2021;1:100009. DOI
127. Yang L, Feng C, Bai L, et al. Flexible shape-stabilized phase change materials with passive radiative cooling capability for thermal
management. Chem Eng J 2021;425:131466. DOI
128. Zhao X, Zou D, Wang S. Flexible phase change materials: preparation, properties and application. Chem Eng J 2022;431:134231.
DOI
129. Nie S, Cai M, Yang H, et al. Soft, stretchable thermal protective substrates for wearable electronics. NPJ Flex Electron 2022:6. DOI
130. Shi Y, Wang C, Yin Y, Li Y, Xing Y, Song J. Functional soft composites as thermal protecting substrates for wearable electronics.
Adv Funct Mater 2019;29:1905470. DOI
131. Jung Y, Ha I, Kim M, Ahn J, Lee J, Ko SH. High heat storing and thermally diffusive artificial skin for wearable thermal
management. Nano Energy 2023;105:107979. DOI
132. Sun N, Li X. A flexible composite phase change material with ultrahigh stretchability for thermal management in wearable
electronics. J Mater Sci 2021;56:15937-49. DOI
133. Choi J, Dun C, Forsythe C, Gordon MP, Urban JJ. Lightweight wearable thermoelectric cooler with rationally designed flexible
heatsink consisting of phase-change material/graphite/silicone elastomer. J Mater Chem A 2021;9:15696-703. DOI
134. Sun W, Liu W, Liu Q, Chen Z. Advances in thermoelectric devices for localized cooling. Chem Eng J 2022;450:138389. DOI
135. Kishore RA, Nozariasbmarz A, Poudel B, Sanghadasa M, Priya S. Ultra-high performance wearable thermoelectric coolers with less
materials. Nat Commun 2019;10:1765. DOI PubMed PMC
136. Hong S, Gu Y, Seo JK, et al. Wearable thermoelectrics for personalized thermoregulation. Sci Adv 2019;5:eaaw0536. DOI PubMed
PMC
137. Zhang T, Li K, Zhang J, et al. High-performance, flexible, and ultralong crystalline thermoelectric fibers. Nano Energy 2017;41:35-
42. DOI
138. Lee J, Sul H, Lee W, et al. Stretchable skin-like cooling/heating device for reconstruction of artificial thermal sensation in virtual
reality. Adv Funct Mater 2020;30:1909171. DOI
139. Han WB, Heo SY, Kim D, et al. Zebra-inspired stretchable, biodegradable radiation modulator for all-day sustainable energy
harvesters. Sci Adv 2023;9:eadf5883. DOI PubMed PMC
140. Ju YS. Thermal management and control of wearable devices. iScience 2022;25:104587. DOI PubMed PMC
141. Jeong H, Wang L, Ha T, et al. Modular and reconfigurable wireless E-tattoos for personalized sensing. Adv Mater Technol
2019;4:1900117. DOI

