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Visual and thermal camouflage on different terrestrial environments based on electrochromism

Title
Visual and thermal camouflage on different terrestrial environments based on electrochromism
Author(s)
Jeon, SuwanLee, Su EonKim, WonjoongLee, Sun HeeMin, SeokhwanSeon, Seung WonHan, Seung HoKim, Bong HoonLee, HeonShin, Jonghwa
Issued Date
2023-07
Citation
Nanophotonics, v.12, no.15, pp.3199 - 3209
Type
Article
Author Keywords
camouflagedual bandsdual environmentselectrochromismradiative cooling
Keywords
TEMPERATURE
ISSN
2192-8606
Abstract
Hiding terrestrial objects from aerial monitoring has long been an important objective in national security and public safety. However, the diversity of terrestrial environments raises great challenges to traditional camouflages optimized for a single spectral band or single type of background environment, rendering them vulnerable in other bands or backgrounds. Herein, we experimentally demonstrate simultaneous visual and thermal camouflage that can adapt to two different environments based on a thermally emissive electrochromic layer. We first explore diverse possible theoretical solutions for dual-band dual-environmental camouflage by solving analytic constraints for camouflage and steady-state thermal conditions and select the most viable approach. Based on the theoretical analysis, we design active camouflage thin-film material systems that can approximate two different target visible and infrared signatures of backgrounds under proper bias voltage. Our potentially flexible camouflage surfaces can also conceal heat sources such as human body as well with tailored designs. These results provide new directions in multi-band stealth designs. © 2023 the author(s), published by De Gruyter, Berlin/Boston.
URI
http://hdl.handle.net/20.500.11750/46327
DOI
10.1515/nanoph-2023-0244
Publisher
De Gruyter
Related Researcher
  • 김봉훈 Kim, Bong Hoon
  • Research Interests IoT Devices; Medical Devices; 3D Materials; Nanomaterials; Self-assembly
Files in This Item:
001007518500001.pdf

001007518500001.pdf

기타 데이터 / 2.13 MB / Adobe PDF download
Appears in Collections:
Department of Robotics and Mechatronics Engineering Bonghoon Group 1. Journal Articles

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