2022
DOI: 10.1021/acs.langmuir.2c02145
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Permeation-Enhanced Degassing Method Based on Xylem Embolism Repair and Gas Permeable Materials

Abstract: Microfluidic devices have developed a wide range of applications in the fields of biomedicine, chemistry, and analytical science. But it is easy to form and accumulate bubbles in microfluidic devices. These bubbles could decrease the detection sensitivity, cause inaccurate analysis results, and even damage the functional region of the device. Inspired by the embolism repair mechanism of angiosperms and the permeability of gas permeable materials, this work proposes a bioinspired permeation-enhanced degassing m… Show more

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