Lee Geonhee, Jang Sojeong, Kim Young-Bin, Cho Donghwi, Jeong Duwon, Chae Soosang, Myoung Jae-Min, Kim Hyunwoo, Kim Sun-Kyung, Lee Jeong-O
Advanced Materials Division, Korea Research Institute of Chemical Technology, Gajeong-ro 141, Daejeon, 34114, Republic of Korea.
Department of Materials Science and Engineering, Yonsei University, 50 Yonsei-ro, Seodaemun-gu, Seoul, 03722, Republic of Korea.
Adv Mater. 2023 Sep;35(38):e2301227. doi: 10.1002/adma.202301227. Epub 2023 Jul 21.
Translucent Au/graphene hybrid films are shown to be effective in reducing thermal emission from the underlying surfaces when the deposition thickness of Au is close to the percolation threshold. The critical Au deposition thickness for an abrupt change in emissivity is reduced from 15 nm (Si substrate) to a percolation-threshold-limited thickness of 8.5 nm (graphene/Si substrate) because of the chemical inertness of graphene leading to the deposited Au atoms forming a thin, crystalline layer. The effect of the graphene layer on the optical properties of the hybrid film is highlighted by a drastic increase in infrared absorptivity, whereas the visible absorptivity is marginally affected by the presence of a graphene layer. The level of thermal emission from the Au/graphene hybrid films with the percolation-threshold-limited Au thickness is stable even with high background temperatures of up to 300 °C and mechanical strains of ≈4%. As an example of a thermal management application, an anti-counterfeiting device is demonstrated; thermal-camouflage-masked text fabricated with an Au/graphene hybrid film is discernible only using a thermographic camera. Ultrathin metal film assisted by a graphene layer will provide a facile platform for thermal management with semi-transparency, flexibility, and transferability to arbitrary surfaces.
当金的沉积厚度接近渗流阈值时,半透明的金/石墨烯混合薄膜被证明能有效降低下层表面的热发射。由于石墨烯的化学惰性导致沉积的金原子形成一层薄的结晶层,发射率发生突变的临界金沉积厚度从15纳米(硅衬底)降低到渗流阈值限制的厚度8.5纳米(石墨烯/硅衬底)。石墨烯层对混合薄膜光学性质的影响通过红外吸收率的急剧增加得以凸显,而可见光吸收率受石墨烯层存在的影响很小。具有渗流阈值限制金厚度的金/石墨烯混合薄膜的热发射水平即使在高达300°C的高背景温度和约4%的机械应变下也很稳定。作为热管理应用的一个例子,展示了一种防伪装置;用金/石墨烯混合薄膜制作的热伪装掩盖文本只有使用热成像相机才能辨别。由石墨烯层辅助的超薄金属薄膜将为具有半透明性、柔韧性和可转移到任意表面的热管理提供一个便捷的平台。