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Punctured Two-Dimensional Sheets for Harvesting Blue Energy

机译:用于收获蓝能的刺破的二维床单

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摘要

The challenges of global climate change and the world's growing demand for energy have brought the need for new renewable energy sources to the top of the international community's agenda. We have known for many centuries that energy is released upon mixing seawater and freshwater, yet it was just a few decades ago that it became clear how this energy can be converted into electricity instead of heat. As a result, the blue energy rush has raised and set new strategies in different science and technology sectors, leading to the construction of a new generation of plants and other technological investments. Among many approaches, pressure retarded osmosis has emerged as a promising method to collect the largest amount of produced blue energy. In this Perspective, we highlight the advances in the development of ultrathin membranes based on two-dimensional materials. We discuss the most relevant synthetic methods devised to generate atomically thin membranes for pressure-retarded osmosis and retarded electrodialysis applications, and we provide some critical views on the greatest challenges in this thrilling research area.
机译:全球气候变化的挑战和世界不断增长的能源需求使得新的可再生能源的需求成为国际社会议程的最重要的。我们已知多个世纪以来,在混合海水和淡水时,能量被释放,但这只是几十年前,这一点明确了如何将这种能量转换为电力而不是热量。因此,蓝能匆忙已经提出并在不同的科技领域提出了新的策略,导致建造新一代植物和其他技术投资。在许多方法中,压力迟缓的渗透被出现为收集最大的产生蓝能量的有希望的方法。在这种观点中,我们突出了基于二维材料的超薄膜发展的进步。我们讨论了最相关的合成方法,以产生原子上薄膜,用于压力迟钝的渗透和迟钝的电渗析应用,我们对这一令人振奋的研究区域的最大挑战提供了一些批判性观点。

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