Han Jihong, Lin Keng-Te, Lin Han, Lau Kin-Tak, Jia Baohua
Centre for Translational Atomaterials, School of Science, Swinburne University of Technology, Hawthorn, Victoria 3122, Australia.
School of Science, RMIT University, Melbourne, Victoria 3000, Australia.
Nano Lett. 2022 Jul 27;22(14):6026-6033. doi: 10.1021/acs.nanolett.1c04768. Epub 2022 May 31.
Thermochromic materials have been widely applied in energy-efficient buildings, aerospace, textiles, and sensors. Conventional thermochromic materials rely on material phase or structure changes upon thermal stimuli, which only enable a few colors, greatly limiting their applicability. Here, we propose and demonstrate the concept of dynamically tunable thermochromic graphene metamaterials (TGMs), which can achieve continuous color tunability (380-800 nm) with fast (<100 ms) response times. The TGMs are composed of an ultrathin graphene oxide (GO) film on a flexible metal substrate. We demonstrated that external thermal energy can dynamically adjust the water contents in the GO film to manipulate the color of TGMs. An impressive thermochromic sensitivity of 1.11 nm/°C covering a large percentage of the color space has been achieved. Prototype applications for a cup and smartphone have been demonstrated. The reversible TGMs promise great potential for practical applications of temperature sensing in optoelectronic devices, environmental monitoring, and dynamic color modulation.
热致变色材料已广泛应用于节能建筑、航空航天、纺织品和传感器领域。传统热致变色材料依赖于热刺激下的材料相或结构变化,这只能产生几种颜色,极大地限制了它们的适用性。在此,我们提出并演示了动态可调热致变色石墨烯超材料(TGM)的概念,它能够以快速(<100毫秒)的响应时间实现连续的颜色可调性(380 - 800纳米)。TGM由柔性金属基板上的超薄氧化石墨烯(GO)薄膜组成。我们证明,外部热能可以动态调节GO薄膜中的含水量,从而控制TGM的颜色。已实现了覆盖大部分颜色空间的高达1.11纳米/°C的热致变色灵敏度。已展示了杯子和智能手机的原型应用。这种可逆TGM在光电器件的温度传感、环境监测和动态颜色调制的实际应用中具有巨大潜力。