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GaN-Based src='/images/tex/20755.gif' alt='{rm S}_{0}'> -Wave Sensors on Silicon for Chemical and Biological Sensing in Liquid Environments

机译:基于GaN的 src =“ / images / tex / 20755.gif” alt =“ {rm S} _ {0}”> -用于化学和化学工业的硅波传感器液体环境中的生物传感

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摘要

In this paper, we successfully developed Lamb-wave sensors in a two-port delay line topology with suspending GaN thin films on silicon substrates. The liquid insusceptibility of the lowest order symmetric mode $({rm S}_{0})$ Lamb wave was experimentally investigated, and the relative frequency shift to water loading of the two-port ${rm S}_{0}$-wave sensors was found to be as small as 0.12%. Our GaN-on-Si sensors, exhibiting a high mass sensitivity (272 ${rm cm}^{2}/{rm g}$) and a sharp signal response at a low concentration (1 $mu{rm g}/{rm mL}$) of anti-bovine serum albumin, were demonstrated to be suitable for chemical and biological sensing in liquid environments. In addition, the small size of the sensors and their potential to be integrated with a wide range of GaN-based devices allow for a robust, low-cost miniature sensing system to be manufactured with GaN-on-Si substrates.
机译:在本文中,我们成功开发了两端口延迟线拓扑结构中的Lamb波传感器,其在硅衬底上悬浮GaN薄膜。实验研究了最低阶对称模式 $({rm S} _ {0})$ $ {rm S} _ {0} $ -波相对于水负荷的相对频移发现传感器小到0.12%。我们的GaN-on-Si传感器表现出很高的质量灵敏度(272 <分子式= inline> $ {rm cm} ^ {2} / {rm g} $ )和低浓度时的尖锐信号响应(1 $ mu {rm g} / {rm mL} $ 已证明适用于液体环境中的化学和生物传感。此外,传感器的小尺寸及其与各种基于GaN的器件集成的潜力,使得可以使用GaN-on-Si衬底制造坚固,低成本的微型传感系统。

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