Rewritable printing of ionic liquid nanofilm utilizing focused ion beam induced film wetting

Author:

Gu HaohaoORCID,Meng Kaixin,Yuan Ruowei,Xiao Siyang,Shan Yuying,Zhu RuiORCID,Deng Yajun,Luo Xiaojin,Li Ruijie,Liu LeiORCID,Chen Xu,Shi Yuping,Wang XiaodongORCID,Duan ChuanhuaORCID,Wang HaoORCID

Abstract

AbstractManipulating liquid flow over open solid substrate at nanoscale is important for printing, sensing, and energy devices. The predominant methods of liquid maneuvering usually involve complicated surface fabrications, while recent attempts employing external stimuli face difficulties in attaining nanoscale flow control. Here we report a largely unexplored ion beam induced film wetting (IBFW) technology for open surface nanofluidics. Local electrostatic forces, which are generated by the unique charging effect of Helium focused ion beam (HFIB), induce precursor film of ionic liquid and the disjoining pressure propels and stabilizes the nanofilm with desired patterns. The IBFW technique eliminates the complicated surface fabrication procedures to achieve nanoscale flow in a controllable and rewritable manner. By combining with electrochemical deposition, various solid materials with desired patterns can be produced.

Funder

National Natural Science Foundation of China

Publisher

Springer Science and Business Media LLC

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