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Bioinspired Universal Flexible Elastomer-Based Microchannels

delete2018-01-11
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吴峰 封面图
吴峰 (Feng Wu)
陈松月 封面图
陈松月 (Songyue Chen)
B
Baiyi Chen
王淼 封面图
王淼 (Miao Wang)
L
Lingli Min
J
Jack Alvarenga
J
Jie Ju
A
Ali Khademhosseini
Y
Yuxing Yao
Y
Yu Shrike Zhang
J
Joanna Aizenberg
侯旭 封面图
侯旭 (Xu Hou) *
DOI:10.1002/smll.201702170delete
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摘要

摘要

En 中文
Flexible and stretchable microscale fluidic devices have a broad range of potential applications, ranging from electronic wearable devices for convenient digital lifestyle to biomedical devices. However, simple ways to achieve stable flexible and stretchable fluidic microchannels with dynamic liquid transport have been challenging because every application for elastomeric microchannels is restricted by their complex fabrication process and limited material selection. Here, a universal strategy for building microfluidic devices that possess exceptionally stable and stretching properties is shown. The devices exhibit superior mechanical deformability, including high strain (967%) and recovery ability, where applications as both strain sensor and pressure-flow regulating device are demonstrated. Various microchannels are combined with organic, inorganic, and metallic materials as stable composite microfluidics. Furthermore, with surface chemical modification these stretchable microfluidic devices can also obtain antifouling property to suit for a broad range of industrial and biomedical applications.
Keyword:
bioinspired devices
elastomers
flexible microchannels
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12.1
论文数:
3.0W
被引数:
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H
Harvard University
学者数:
26.5W
论文数: 22.0W
被引数: 28.7W
X
xiamen university
学者数:
5.9W
论文数: 3.8W
被引数: 67
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