首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Double-side-coated nanomechanical membrane-type surface stress sensor (MSS) for one-chip-one-channel setup
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Double-side-coated nanomechanical membrane-type surface stress sensor (MSS) for one-chip-one-channel setup

机译:双面涂层纳米机械膜型表面应力传感器(MSS),用于单芯片单通道设置

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摘要

With their capability for real-time and label-free detection of targets ranging from gases to biological molecules, nanomechanical sensors are expected to contribute to various fields, such as medicine, security, and environmental science. For practical applications, one of the major issues of nanomechanical sensors is the difficulty of coating receptor layers on their surfaces to which target molecules adsorb or react. To have measurable deflection, a single-side coating is commonly applied to cantilever-type geometry, and it requires specific methods or protocols, such as inkjet spotting or gold-thiol chemistry. If we can apply a double-side coating to nanomechanical sensors, it allows almost any kind of coating technique including dip coating methods, making nanomechanical sensors more useful with better user experiences. Here we address the feasibility of the double-side coating on nanomechanical sensors demonstrated by a membrane-type surface stress sensor (MSS) and verify its working principle by both finite element analysis (FEA) and experiments. In addition, simple hand-operated dip coating is demonstrated as a proof of concept, achieving practical receptor layers without any complex instrumentation. Because the double-side coating is compatible with batch protocols such as dip coating, double-side-coated MSS represents a new paradigm of one-chip-one-channel (channels on a chip are all coated with the same receptor layers) shifting from the conventional one-chip-multiple-channel (channels on a chip are coated with different receptor layers) paradigm.
机译:纳米机械传感器具有实时,无标签检测从气体到生物分子的目标的能力,有望在医学,安全和环境科学等各个领域做出贡献。对于实际应用,纳米机械传感器的主要问题之一是难以在目标分子吸附或反应的表面上涂覆受体层。为了具有可测量的挠度,通常将单面涂层应用于悬臂式几何结构,并且它需要特定的方法或协议,例如喷墨点样或金硫醇化学法。如果我们可以在纳米机械传感器上应用双面涂层,那么它几乎可以采用任何涂层技术,包括浸涂法,从而使纳米机械传感器在提供更好的用户体验时更加有用。在这里,我们通过膜型表面应力传感器(MSS)展示了在纳米机械传感器上进行双面涂层的可行性,并通过有限元分析(FEA)和实验来验证其工作原理。此外,简单的手工浸涂法被证明是一种概念证明,无需任何复杂的仪器即可实现实用的接受层。由于双面涂层与批量方案(例如浸涂)兼容,因此双面涂层的MSS代表了单芯片单通道(芯片上的通道都涂有相同的受体层)的新范式传统的单芯片多通道(芯片上的通道涂有不同的受体层)范例。

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