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首页> 外文期刊>IEEE sensors journal >Out-of-Plane Microtube Arrays for Biomedical Sensors Using Vapor-Liquid-Solid Growth Method
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Out-of-Plane Microtube Arrays for Biomedical Sensors Using Vapor-Liquid-Solid Growth Method

机译:使用蒸气-液体-固体生长法的生物医学传感器的平面外微管阵列

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This paper reports on a novel technique for realizing submicron and micron diameter $hbox{SiO}_{2}$ tubes on a Si substrate for biomedical applications such as, for example, patch clamps. The tube arrays have been successfully fabricated on Si substrates using a selective vapor-liquid-solid (VLS) growth method combined with MEMS techniques. The size of the tubes is typically between 0.2 $muhbox{m}$ and 2 $muhbox{m}$ in diameter and from 8 $muhbox{m}$ to 40 $muhbox{m}$ in length. The dimensions are controlled by the diameter of a Au pattern and the VLS growth time. The tubes were coated with parylene, a biocompatible material, which makes them stronger. The diameter is such that the array can be used in biomedical applications where insertion of the tubes into tissue is minimally invasive. Water flow experiments through the tubes were carried out successfully without the tubes breaking.
机译:本文报道了一种用于在生物医学应用(例如膜片钳)的Si基板上实现亚微米和微米直径的$ hbox {SiO} _ {2} $管的新颖技术。该管阵列已使用选择性气液固(VLS)生长方法与MEMS技术相结合,成功地在Si基板上制造。管的尺寸通常直径在0.2 $ muhbox {m} $和2 $ muhbox {m} $之间,长度从8 $ muhbox {m} $到40 $ muhbox {m} $。尺寸由Au图案的直径和VLS生长时间控制。管子上涂有聚对二甲苯(一种生物相容性材料),这使它们更坚固。该直径使得该阵列可用于生物医学应用中,其中将管插入组织的侵入性最小。通过试管的水流实验成功进行,没有试管破裂。

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