Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Key Laboratory of Cluster Science, Ministry of Education of China, School of Chemistry and Chemical engineering, Beijing Institute of Technology, Beijing 100081, P. R. China.
Nanoscale. 2017 Jul 6;9(26):9089-9094. doi: 10.1039/c7nr03580b.
Recycling of plastic waste has commercial value and practical significance for both environmental safety and recovery of resources. To realize trash recycling, a cheap, simple, and safe solid-state chemical vapor deposition method has been developed to convert a series of daily plastic wastes to a high quality graphene foil (GF) at a large scale. The GF possesses a high electrical conductivity of 3824 S·cm, which is much higher than that of the conventional free-standing graphene film treated at an extremely high temperature of 2200-2500 °C. Further, the GF can act as various flexible elements such as a free-standing electrode in a foldable lithium-ion battery, which shows stable electrochemical performances. On the other hand, it presents a fast and ultra low-voltage responsivity to be used as a flexible electrothermal heater, which generates a temperature of up to 322.6 °C at a low input voltage of only 5 V. The convenient trash-to-treasure conversion of plastics to GF provides a unique pathway for waste recycling and opens new application possibilities of graphene in various fields.
塑料废物的回收具有商业价值和实际意义,既有利于环境安全,又有利于资源回收。为了实现垃圾回收,开发了一种廉价、简单、安全的固态化学气相沉积方法,可大规模将一系列日常塑料废物转化为高质量的石墨烯箔(GF)。GF 的电导率高达 3824 S·cm,远高于在 2200-2500°C 的极高温度下处理的传统独立式石墨烯膜。此外,GF 可以用作各种柔性元件,例如可折叠锂离子电池中的独立电极,其表现出稳定的电化学性能。另一方面,它表现出快速和超低电压响应能力,可作为柔性电热加热器使用,在仅 5 V 的低输入电压下可产生高达 322.6°C 的温度。将塑料方便地从垃圾转化为 GF 为废物回收提供了一条独特的途径,并为石墨烯在各个领域的新应用开辟了可能性。