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用于摩擦电能量收集的具有快速雾消化性能的智能披针形表面。

Smart Lanceolate Surface with Fast Fog-Digesting Performance for Triboelectric Energy Harvesting.

作者信息

Zhang Song, Zhou Xujun, Nie Zhichao, Su Chaolin, Lu Qizhao, Wei Jiajia, Liu Tao, Chi Mingchao, Luo Bin, Liu Yanhua, Cai Chenchen, Wang Jinlong, Gao Cong, Wang Shuangfei, Nie Shuangxi

机构信息

School of Light Industry and Food Engineering, Guangxi University, Nanning 530004, PR China.

School of Chemistry and Chemical Engineering, Guangxi University, Nanning 530004, PR China.

出版信息

ACS Nano. 2024 Aug 13;18(32):21316-21325. doi: 10.1021/acsnano.4c05403. Epub 2024 Aug 1.

Abstract

Utilizing the ubiquitous fog in nature to create decentralized energy-harvesting devices, free from geographical and hydrological constraints, presents an opportunity to foster sustainable power generation. Extracting electrical energy from fog relies heavily on fog-digesting performance. Improving the efficiency of fogwater utilization remains a formidable challenge for existing fogwater energy-harvesting technologies. Inspired by the water-harvesting behavior of leaves, a smart lanceolate surface is developed to harvest triboelectric energy by rapidly digesting fog. Such a surface exhibits capabilities in fog management, encompassing precise fog capture, transportation, and critical droplet separation. Specifically, fog droplets condense at hydrophilic sites of acylated cellulose ester, subsequently migrating toward the rear under Laplace pressure, thereby producing energy as they traverse through the tail end. Such architecture yields a brief voltage restoration period (with an average of 9.36 s), can rush the capacitor to 11.59 V within 20 s, and achieves a water-digestion rate of up to 71.05 kg/m h. This biomimetic approach enhances the water-digestion efficacy of the atmospheric water energy apparatus and offers perspectives on mitigating deficiencies in power resources.

摘要

利用自然界中无处不在的雾气来制造不受地理和水文限制的分散式能量收集装置,为促进可持续发电提供了契机。从雾气中提取电能在很大程度上依赖于雾气消化性能。提高雾水利用效率对现有的雾水能量收集技术而言仍然是一项艰巨的挑战。受叶片集水行为的启发,人们开发出一种智能披针形表面,通过快速消化雾气来收集摩擦电能。这种表面在雾气管理方面展现出多种能力,包括精确的雾气捕获、传输以及关键的液滴分离。具体而言,雾滴在酰化纤维素酯的亲水位点凝结,随后在拉普拉斯压力作用下向后迁移,在穿过尾端时产生能量。这种结构产生短暂的电压恢复周期(平均为9.36秒),能在20秒内将电容器充电至11.59伏,并实现高达71.05千克/平方米·小时的水消化速率。这种仿生方法提高了大气水能装置的水消化效率,并为缓解电力资源短缺问题提供了思路。

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