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Suspended glass nanochannels coupled with microstructures for single molecule detection

机译:悬浮玻璃纳米通道结合微结构,用于单分子检测

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摘要

We present a nonlithographic approach for forming free standing nanochannels, made of a variety of materials, that can be easily integrated with microfabricated structures. The approach uses a deposited polymeric fiber as a sacrificial template around which a deposited coating forms a tube. We formed suspended nanochannels of silica glass spanning a trench on a silicon wafer and used these structures for detection of single fluorescently labeled proteins. This geometry provides excellent isolation of the molecules of interest and also separates them from surrounding material that could create unwanted background fluorescence. The same geometry provides a platform for observing motion and mechanical response of the suspended nanochannel, and we measured the mechanical resonance of a glass channel of the type used for the fluorescent detection. This type of structure provides a general approach for integrating fluid carrying nanochannels with microstructures.
机译:我们提出了一种非光刻方法,用于形成由多种材料制成的独立式纳米通道,可以轻松地与微细结构集成。该方法使用沉积的聚合物纤维作为牺牲模板,沉积的涂层围绕该牺牲模板形成管。我们形成了横跨硅晶片上沟槽的石英玻璃悬浮纳米通道,并将这些结构用于检测单个荧光标记的蛋白质。这种几何形状可以很好地隔离目标分子,并将它们与周围的物质分离,从而可能产生不需要的背景荧光。相同的几何形状为观察悬浮的纳米通道的运动和机械响应提供了一个平台,并且我们测量了用于荧光检测的玻璃通道的机械共振。这种类型的结构提供了一种集成流体携带纳米通道和微结构的通用方法。

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