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- W2605983048 abstract "A bio-inspired, leaf-like pumping strategy by mimicking the transpiration process through leaves is developed for autonomous and continuous liquid transport enabled by durable hydrophilic sponges. Without any external power sources, flows are continuously generated ascribed to the combination of capillary wicking and evaporation of water. To validate this method, durable hydrophilic polydimethylsiloxane sponges modified with polyvinyl alcohol via a dip-coat-dry method have been fabricated, which maintains hydrophilicity more than 2 months. The as-made sponges are further applied to achieve stable laminar flow patterns, chemical gradients, and stop-flow manipulation of the flow in microfluidic devices. More importantly, the ease-of-operation and excellent pumping capacity have also been verified with over 24 h's pumping and quasi-stable high flow rates up to 15 µL min-1. The present strategy can be easily integrated to other miniaturized systems requiring pressure-driven flow and should have potential applications, such as cell culture, micromixing, and continuous flow reaction." @default.
- W2605983048 created "2017-04-28" @default.
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- W2605983048 date "2017-04-19" @default.
- W2605983048 modified "2023-10-18" @default.
- W2605983048 title "Hydrophilic Sponges for Leaf-Inspired Continuous Pumping of Liquids" @default.
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- W2605983048 doi "https://doi.org/10.1002/advs.201700028" @default.
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