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首页> 外文期刊>Journal of Microelectromechanical Systems >Fabrication of a Fabry–PÉrot Cavity in a Microfluidic Channel Using Thermocompressive Gold Bonding of Glass Substrates
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Fabrication of a Fabry–PÉrot Cavity in a Microfluidic Channel Using Thermocompressive Gold Bonding of Glass Substrates

机译:使用玻璃基板的热压金键合在微流体通道中制造法布里-珀罗腔

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This paper presents a simple, low-cost, and reliable process for the fabrication of a microfluidic Fabry–PÉrot cavity in a Pyrex glass substrate. The microfluidic channels were etched in HF solution on a glass substrate using a Cr/Au/photoresist etching mask resulting in a channel bottom roughness of 1.309 nm. An effective thermocompressive gold–gold bonding technique was used to bond the photolithographically etched glass substrates inside a 350$^circ C $oven in a$ 10^ - 3~ torr $vacuum. Pressure was applied to the glass pieces by using two aluminum blocks with intermediate copper sheets. This method takes advantage of using Cr/Au layers both as a wet etching mask and as intermediate bonding layers, requiring only one lithography step for the entire process. The fabrication method is also compatible with the incorporation of dielectric mirror coatings in the channels to form a high-finesse Fabry–PÉrot cavity. A parallelism of 0.095 degrees was measured, and a finesse as high as 30 was obtained using an LED. The microfluidic cavity developed here can be used in electrophoresis and intracavity spectroscopy experiments.hfillhbox[1375]
机译:本文提出了一种在耐热玻璃基板中制造微流体法布里-珀罗腔的简单,低成本,可靠的工艺。使用Cr / Au /光致抗蚀剂蚀刻掩模在玻璃基板上的HF溶液中蚀刻微流体通道,从而得到1.309 nm的通道底部粗糙度。一种有效的热压金金结合技术被用来将光刻蚀的玻璃基板在10℃-3℃至3 to真空下粘结在350℃的烤箱内。通过使用两个带有中间铜片的铝块对玻璃片施加压力。该方法利用了将Cr / Au层既用作湿蚀刻掩模又用作中间粘结层的优点,整个过程仅需一个光刻步骤即可。该制造方法还与在通道中加入电介质镜面涂层形成高精细的Fabry–PÉrot腔体兼容。测量了0.095度的平行度,并且使用LED获得了高达30的精细度。这里开发的微流体腔可用于电泳和腔内光谱实验。hfillhbox[1375]

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