帧(网络)
过程(计算)
计算机科学
微流控
帧速率
纳米技术
材料科学
计算机硬件
人工智能
电信
操作系统
作者
Yiyuan Zhang,Zhandong Huang,Feifei Qin,Hongzhou Wang,Kai Cui,Kun Guo,Zheren Cai,Xiaobing Cai,Junfeng Xiao,Jan Carmeliet,Jinjia Wei,Yanlin Song,Jun Yang,Liqiu Wang
出处
期刊:
[Springer Science+Business Media]
日期:2024-07-12
卷期号:1 (7): 472-482
被引量:20
标识
DOI:10.1038/s44286-024-00090-w
摘要
Abstract Human civilization relies heavily on the ability to precisely process liquids. Switching between liquid capture and release plays a fundamental role in the handling of various liquids, with applications that demand reversible, spatially and temporally precise, volumetrically accurate and programmable control over the liquid, independent of the details of the employed solid tools and processed liquids. However, current fluidic techniques do not fully meet these requirements. Here we present connected polyhedral frames to effectively address this challenge by tailoring liquid continuity between frames to dictate the liquid capture or release of individual frames, with an overall network that is readily switchable locally, dynamically and reversibly. Each frame captures or releases liquids, independent of its base materials, structures and processed liquids. The connected polyhedral frames are a versatile tool that enables many important functions including three-dimensional (3D) programmable patterning of liquids, 3D spatiotemporal control of concentrations of multiple materials, packaging of 3D liquid arrays and large-scale manipulation of multiple liquids, thus considerably advancing many fields, including interface science and soft materials.
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