Ma Qinglang, He Qiyuan, Yin Pengfei, Cheng Hongfei, Cui Xiaoya, Yun Qinbai, Zhang Hua
Center for Programmable Materials, School of Materials Science and Engineering, Nanyang Technological University, 50 Nanyang Avenue, Singapore, 639798, Singapore.
Department of Materials Science and Engineering, City University of Hong Kong, Hong Kong, China.
Adv Mater. 2020 Sep;32(37):e2003720. doi: 10.1002/adma.202003720. Epub 2020 Aug 6.
The continuous exploration of clean-energy technology is critical for the sustainable development of society. The recent work on the electric energy harvesting from water evaporation has made a significant contribution to the utilization of clean energy for self-powering systems. Here, a novel metal-organic-framework-based hybrid nanomaterial is delicately designed and synthesized by the growth of UIO-66 nanoparticles on 2D AlOOH nanoflakes. Due to the combined merits from the 2D morphology, which is inherited from the AlOOH nanoflakes, and the high surface potential, which originates from the UIO-66 nanoparticles, the device made of the AlOOH/UIO-66 hybrid nanomaterials can harvest electric energy from natural water evaporation. An open-circuit voltage of 1.63 ± 0.10 V can be achieved on the prototype devices made of the hybrid nanomaterial. As a proof-of-concept application, a small electric appliance, e.g., a digital calculator, is powered up by a 3 × 3 device array connected in a combined series-parallel configuration.
对清洁能源技术的持续探索对社会的可持续发展至关重要。最近关于从水蒸发中收集电能的工作为自供电系统的清洁能源利用做出了重大贡献。在此,通过在二维AlOOH纳米片上生长UIO-66纳米颗粒,精心设计并合成了一种新型的基于金属有机框架的混合纳米材料。由于继承自AlOOH纳米片的二维形态以及源自UIO-66纳米颗粒的高表面电位的综合优点,由AlOOH/UIO-66混合纳米材料制成的器件能够从自然水蒸发中收集电能。由混合纳米材料制成的原型器件可实现1.63±0.10 V的开路电压。作为概念验证应用,一个小型电器,例如数字计算器,由以串并联组合配置连接的3×3器件阵列供电。