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首页> 外文期刊>ACS applied materials & interfaces >Printed Honeycomb-Structured Reduced Graphene Oxide Film for Efficient and Continuous Evaporation-Driven Electricity Generation from Salt Solution
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Printed Honeycomb-Structured Reduced Graphene Oxide Film for Efficient and Continuous Evaporation-Driven Electricity Generation from Salt Solution

机译:印刷蜂窝结构化的石墨烯氧化膜,用于从盐溶液中有效和连续蒸发驱动的发电

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摘要

Water-evaporation-induced electricity generation provides an ideal strategy to solve growing energy demand and supply power for self-powered systems because of its advantages of a highly spontaneous process, continuous power generation, and low cost. However, the reported evaporation-induced generators are limited to working only in deionized (DI) water, leading to a low output power. Herein, we utilize a modified multiple ion mode to demonstrate that the streaming potential can be optimized in microchannels filled with salt solution and achieve an enhanced evaporation-induced output power in salt solution by a generator based on honeycomb-structured reduced graphene oxide (rGO) film with abundant interconnected microchannels. This generator enables an around 2-fold open-circuit voltage (V-oc) and a 3.3-fold power density of 0.91 mu W cm(-2) in 0.6 M NaCl solution compared to that in DI water. Experiments evidence that the honeycomb structure with abundant interconnected microchannels plays a key role in achieving high and stable output power in salt solution because of its large specific surface area and excellent ion-exchange capacity. Notably, it can work at all times of day and night for more than 240 h in natural seawater, delivering a stable V-oc of similar to 0.83 V with a power density of 0.79 mu W cm(-2). This study expands a working solution for water-evaporation-induced electricity generation from DI water to natural seawater, advancing a great step toward practical applications.
机译:水蒸发发电具有自发过程高、发电连续、成本低等优点,为解决日益增长的能源需求和自供电系统供电提供了理想的策略。然而,据报道,蒸发诱导发电机仅限于在去离子水中工作,导致输出功率低。在此,我们利用一种改进的多离子模式来证明,通过基于蜂窝结构的还原氧化石墨烯(rGO)薄膜和大量互连微通道的发生器,在充满盐溶液的微通道中可以优化流电势,并在盐溶液中实现增强的蒸发诱导输出功率。与去离子水相比,该发生器在0.6 M NaCl溶液中的开路电压(V-oc)约为2倍,功率密度为0.91μW cm(-2)的3.3倍。实验证明,具有大量互连微通道的蜂窝结构,由于其大的比表面积和良好的离子交换能力,在盐溶液中实现高而稳定的输出功率起着关键作用。值得注意的是,它可以在自然海水中昼夜工作240小时以上,提供类似于0.83 V的稳定V-oc,功率密度为0.79μW-cm(-2)。这项研究扩展了一种工作方案,将水蒸发诱导发电从去离子水扩展到天然海水,朝着实际应用迈进了一大步。

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