Ergoktas M Said, Bakan Gokhan, Steiner Pietro, Bartlam Cian, Malevich Yury, Ozden-Yenigun Elif, He Guanliang, Karim Nazmul, Cataldi Pietro, Bissett Mark A, Kinloch Ian A, Novoselov Kostya S, Kocabas Coskun
Department of Materials, University of Manchester, Manchester M13 9PL, United Kingdom.
National Graphene Institute, University of Manchester, Manchester M13 9PL, United Kingdom.
Nano Lett. 2020 Jul 8;20(7):5346-5352. doi: 10.1021/acs.nanolett.0c01694. Epub 2020 Jun 18.
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.
交互式服装需要将传感和显示功能嵌入到纺织品中。尽管电子纺织品取得了重大进展,但将光电材料集成到织物上仍然是一个突出的挑战。在本信函中,利用石墨烯的电光可调性,我们报道了具有电控反射率和发射率的自适应光学纺织品,其覆盖红外和近红外波长。我们通过将离子可逆地插入层压在织物上的石墨烯层中来实现电光调制。我们展示了一类新型的红外纺织器件,包括使用天然和合成纺织品的显示器、纱线和可拉伸器件。为了展示我们方法的前景,我们直接在T恤上制作了一个有源器件,该器件能够通过调制人体的热辐射实现长波长红外通信。这里展示的结果提供了互补技术,可利用功能性纺织品的广泛应用。