Kumar Rahul, Kay George, Beaton Graham, Liu Guojun, Stamplecoskie Kevin
Department of Chemistry, Queen's University, 90 Bader Lane, Kingston, Ontario K7L 3N6, Canada.
ACS Appl Mater Interfaces. 2023 Feb 8;15(5):7511-7517. doi: 10.1021/acsami.2c18317. Epub 2023 Jan 27.
The recent discovery of hydrovoltaic devices for power generation has led to a rapid growth into new materials for harvesting energy specifically for this research field. Of the materials investigated, carbon materials have dominated, and graphene oxide (GO) has emerged as the leader. While graphite is conductive, it does not have functional groups to strongly interact with water, and highly functionalized GO forms strong interaction with water to generate necessary surface charges but does not typically have high conductivity. Herein, we report the fabrication and functionalization of a graphite-based structure, controlling the extent of oxidation to balance the effects of conductivity and functionalization to achieve high power outputs in hydrovoltaics. Devices prepared using the functionalized graphite achieve a power output of 53.3 μW/g. High power output and good film stability are key advances toward the practical application of hydrovoltaic devices for renewable energy.
最近发现的用于发电的水力发电装置促使了专门针对该研究领域的用于收集能量的新材料迅速发展。在所研究的材料中,碳材料占主导地位,氧化石墨烯(GO)已成为佼佼者。虽然石墨具有导电性,但它没有能与水强烈相互作用的官能团,而高度功能化的GO与水形成强相互作用以产生必要的表面电荷,但通常不具有高导电性。在此,我们报告了一种基于石墨结构的制造和功能化方法,控制氧化程度以平衡导电性和功能化的影响,从而在水力发电中实现高功率输出。使用功能化石墨制备的装置实现了53.3 μW/g的功率输出。高功率输出和良好的薄膜稳定性是水力发电装置在可再生能源实际应用方面的关键进展。