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首页> 外文期刊>Angewandte Chemie >Unusual Ultra-Hydrophilic, Porous Carbon Cuboids for Atmospheric-Water Capture
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Unusual Ultra-Hydrophilic, Porous Carbon Cuboids for Atmospheric-Water Capture

机译:用于大气水捕集的不寻常的超亲水多孔碳长方体

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摘要

There is significant interest in high-performance materials that can directly and efficiently capture water vapor, particularly from air. Herein, we report a class of novel porous carbon cuboids with unusual ultra-hydrophilic properties, over which the synergistic effects between surface heterogeneity and micropore architecture is maximized, leading to the best atmospheric water-capture performance among porous carbons to date, with a water capacity of up to 9.82mmolg(-1) at P/P-0=0.2 and 25 degrees C (20% relative humidity or 6000ppm). Benefiting from properties, such as defined morphology, narrow pore size distribution, and high heterogeneity, this series of functional carbons may serve as model materials for fundamental research on carbon chemistry and the advance of new types of materials for water-vapor capture as well as other applications requiring combined highly hydrophilic surface chemistry, developed hierarchical porosity, and excellent stability.
机译:可以直接和有效地捕获水蒸气,尤其是空气中的水蒸气的高性能材料引起了人们极大的兴趣。在本文中,我们报告了一类具有异常超亲水特性的新型多孔碳长方体,其表面异质性与微孔结构之间的协同效应得以最大化,从而使水迄今为止在多孔碳中具有最佳的大气捕水性能在P / P-0 = 0.2和25摄氏度(20%相对湿度或6000ppm)时,容量可达9.82mmolg(-1)。受益于诸如定义的形态,狭窄的孔径分布和高的非均质性等特性,该系列功能碳可以作为模型基础材料,用于碳化学的基础研究以及用于水蒸气捕集的新型材料的开发以及其他需要结合高度亲水性表面化学,发展出分层孔隙率和出色稳定性的应用。

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