扩散
密闭空间
分子
化学物理
链条(单位)
纳米技术
分子扩散
频道(广播)
化学
材料科学
物理
计算机科学
电信
热力学
天文
经济
公制(单位)
有机化学
运营管理
作者
Jiamin Yuan,Mingbin Gao,Zhiqiang Liu,Xiaomin Tang,Yu Tian,Gang Ma,Mao Ye,Anmin Zheng
标识
DOI:10.1038/s41467-023-37455-3
摘要
Abstract The ultrafast transport of adsorbates in confined spaces is a goal pursued by scientists. However, diffusion will be generally slower in nano-channels, as confined spaces inhibit motion. Here we show that the movement of long-chain molecules increase with a decrease in pore size, indicating that confined spaces promote transport. Inspired by a hyperloop running on a railway, we established a superfast pathway for molecules in zeolites with nano-channels. Rapid diffusion is achieved when the long-chain molecules keep moving linearly, as well as when they run along the center of the channel, while this phenomenon do not exist for short-chain molecules. This hyperloop-like diffusion is unique for long-chain molecules in a confined space and is further verified by diffusion experiments. These results offer special insights into molecule diffusion under confinement, providing a reference for the selection of efficient catalysts with rapid transport in the industrial field.
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