Key Laboratory of Functional Polymer Materials and Center for Nanoscale Science and Technology Institute of Polymer Chemistry College of Chemistry Nankai University Tianjin, 300071, China.
Small. 2011 Nov 18;7(22):3186-92. doi: 10.1002/smll.201101305. Epub 2011 Oct 11.
High-performance and novel graphene-based electrothermal films are fabricated through a simple yet versatile solution process. Their electrothermal performances are studied in terms of applied voltage, heating rate, and input power density. The electrothermal films annealed at high temperature show high transmittance and display good heating performance. For example, the graphene-based film annealed at 800 °C, which shows transmittance of over 80% at 550 nm, can reach a saturated temperature of up to 42 °C when 60 V is applied for 2 min. Graphene-based films annealed at 900 and 1000 °C can exhibit high steady-state temperatures of 150 and 206 °C under an applied voltage of 60 V with a maximum heating rate of over 7 °C s(-1) . For flexible heating films patterned on polyimide, a steady-state temperature of 72 °C could be reached in less than 10 s with a maximum heating rate exceeding 16 °C s(-1) at 60 V. These excellent results, combined with the high chemical stability and mechanical flexibility of graphene, indicate that graphene-based electrothermal elements hold great promise for many practical applications, such as defrosting and antifogging devices.
通过一种简单而通用的溶液处理方法,制备了具有高性能和新颖结构的基于石墨烯的电热薄膜。研究了它们在施加电压、加热速率和输入功率密度方面的电热性能。在高温下退火的电热薄膜具有高透过率,并表现出良好的加热性能。例如,在 550nm 处透过率超过 80%的 800°C 退火的基于石墨烯的薄膜,在施加 60V 电压 2 分钟时可达到高达 42°C 的饱和温度。在 60V 施加电压下,退火至 900°C 和 1000°C 的基于石墨烯的薄膜可分别展现出高达 150°C 和 206°C 的稳态温度,最大加热速率超过 7°C s(-1)。对于图案化在聚酰亚胺上的柔性加热薄膜,在 60V 时,最大加热速率超过 16°C s(-1),不到 10s 即可达到 72°C 的稳态温度。这些优异的结果,结合石墨烯的高化学稳定性和机械柔韧性,表明基于石墨烯的电热元件在除霜和防雾装置等许多实际应用中具有广阔的应用前景。