化学
扩散
氧气
碳纤维
限制电流
色散(光学)
微型多孔材料
多孔介质
多孔性
水溶液
化学工程
分子扩散
气体扩散
热力学
物理化学
有机化学
复合材料
电化学
物理
材料科学
运营管理
公制(单位)
电极
复合数
工程类
光学
经济
作者
Debabrata Moitra,Arvind Ganesan,Fan Wang,Liqi Qiu,Kevin M. Siniard,Zhenzhen Yang,Shannon M. Mahurin,Lilin He,Kai Li,Hongjun Liu,De‐en Jiang,Tao Wang,Sheng Dai
摘要
Porous liquids have traditionally been designed with sterically hindered solvents. Alternatively, recent efforts rely on dispersing microporous frameworks in simpler solvents like water. Here we report a unique strategy to construct macroporous water by selectively incorporating hydrophilicity on the surfaces of hydrophobic hollow carbon spheres (HCS). Specifically, we show that the stable dispersion surface ionized HCS in water while retaining the inherent porosity. The electrocatalytic conversion of small gas molecules in aqueous electrolytes is limited by the concentration and diffusion rates of gas molecules in water. In this case, macroporous water exhibited 6 times gas uptake compared to nonporous (pure) water. By leveraging the high gas capacity and enhanced diffusion kinetics, the limiting diffusion current of oxygen reduction reaction (ORR) in macroporous water is 2 times that in nonporous water, offering promising prospects for sustainable energy conversion technologies.
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