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是什么让纳米孔持续沸腾。

What keeps nanopores boiling.

作者信息

Giacomello Alberto

机构信息

Dipartimento di Ingegneria Meccanica e Aerospaziale, Sapienza Università di Roma, 00184 Rome, Italy.

出版信息

J Chem Phys. 2023 Sep 21;159(11). doi: 10.1063/5.0167530.

Abstract

The liquid-to-vapor transition can occur under unexpected conditions in nanopores, opening the door to fundamental questions and new technologies. The physics of boiling in confinement is progressively introduced, starting from classical nucleation theory, passing through nanoscale effects, and terminating with the material and external parameters that affect the boiling conditions. The relevance of boiling in specific nanoconfined systems is discussed, focusing on heterogeneous lyophobic systems, chromatographic columns, and ion channels. The current level of control of boiling in nanopores enabled by microporous materials such as metal organic frameworks and biological nanopores paves the way to thrilling theoretical challenges and to new technological opportunities in the fields of energy, neuromorphic computing, and sensing.

摘要

液-气转变可能在纳米孔中意想不到的条件下发生,这为一些基本问题和新技术打开了大门。从经典成核理论开始,逐步引入受限环境中沸腾的物理学,经过纳米尺度效应,最后以影响沸腾条件的材料和外部参数结束。讨论了特定纳米受限系统中沸腾的相关性,重点关注非均相疏液系统、色谱柱和离子通道。金属有机框架等微孔材料和生物纳米孔对纳米孔中沸腾的当前控制水平为能源、神经形态计算和传感领域带来了激动人心的理论挑战和新的技术机遇。

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