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Ion-specific ice recrystallization provides a facile approach for the fabrication of porous materials

机译:离子特定的冰重结晶提供了一种制造多孔材料的简便方法

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Ice recrystallization is of great importance to both fundamental research and practical applications, however understanding and controlling ice recrystallization processes remains challenging. Here, we report the discovery of an ion-specific effect on ice recrystallization. By simply changing the initial type and concentration of ions in an aqueous solution, the size of ice grains after recrystallization can be tuned from 27.4±4.1 to 277.5±30.9?μm. Molecular dynamics simulations show that the ability of the ion to be incorporated into the ice phase plays a key role in the ultimate size of the ice grains after recrystallization. Moreover, by using recrystallized ice crystals as templates, 2D and 3D porous networks with tuneable pore sizes could be prepared from various materials, for example, NaBr, collagen, quantum dots, silver and polystyrene colloids. These porous materials are suitable for a wide range of applications, for example, in organic electronics, catalysis and bioengineering.
机译:冰的重结晶对于基础研究和实际应用都非常重要,但是,了解和控制冰的重结晶过程仍然具有挑战性。在这里,我们报告了对冰重结晶的离子特异性作用的发现。通过简单地改变水溶液中离子的初始类型和浓度,可以将重结晶后的冰粒尺寸从27.4±4.1调整为277.5±30.9?μm。分子动力学模拟表明,将离子结合到冰相中的能力在重结晶后对冰粒的最终尺寸起关键作用。此外,通过使用重结晶的冰晶作为模板,可以用各种材料(例如NaBr,胶原蛋白,量子点,银和聚苯乙烯胶体)制备具有可调节孔径的2D和3D多孔网络。这些多孔材料适用于广泛的应用,例如有机电子,催化和生物工程领域。

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