| Literature DB >> 32551694 |
M Said Ergoktas1,2, Gokhan Bakan1,2, Pietro Steiner1,2, Cian Bartlam1,2, Yury Malevich1,2, Elif Ozden-Yenigun3, Guanliang He1, Nazmul Karim4, Pietro Cataldi1,2, Mark A Bissett1,2,5, Ian A Kinloch1,2,5, Kostya S Novoselov2,6, Coskun Kocabas1,2,5.
Abstract
Interactive clothing requires sensing and display functionalities to be embedded on textiles. Despite the significant progress of electronic textiles, the integration of optoelectronic materials on fabrics remains as an outstanding challenge. In this Letter, using the electro-optical tunability of graphene, we report adaptive optical textiles with electrically controlled reflectivity and emissivity covering the infrared and near-infrared wavelengths. We achieve electro-optical modulation by reversible intercalation of ions into graphene layers laminated on fabrics. We demonstrate a new class of infrared textile devices including display, yarn, and stretchable devices using natural and synthetic textiles. To show the promise of our approach, we fabricated an active device directly onto a t-shirt, which enables long-wavelength infrared communication via modulation of the thermal radiation from the human body. The results presented here provide complementary technologies which could leverage the ubiquitous use of functional textiles.Entities:
Keywords: Infrared emissivity; functional textile; graphene; optoelectronics; thermal camouflage
Year: 2020 PMID: 32551694 DOI: 10.1021/acs.nanolett.0c01694
Source DB: PubMed Journal: Nano Lett ISSN: 1530-6984 Impact factor: 11.189