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首页> 外文期刊>International Journal of Thermophysics >An Analytical Model for Thermal Effect of Microcantilever-DNA Biosensors
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An Analytical Model for Thermal Effect of Microcantilever-DNA Biosensors

机译:微悬臂DNA生物传感器的热效应分析模型

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摘要

The thermal effect of microcantilever-DNA biosensors is investigated by the energy method. Based on a liquid crystal theory for DNA solutions and a two-variable method for laminated cantilevers, an analytical model for nanomechanical cantilever motion under the combination of bio-interactions and thermal loadings is provided and then it is extended to T-shaped cantilevers. Then, the effects of chemo-physical properties of DNA biofilm (i.e., grafting density, nucleotide number, and ionic strength) and temperature change on deflections are discussed. In order to reduce noise signals, the controlling temperature and size optimization of cantilevers with different substrate materials and ionic strengths are also studied. Results show that SU-8 polymer cantilevers can preserve the sensitivity of molecule adsorption and thermal stability, which agrees well with the related experiments; the layer-to-layer thickness ratio of SU-8 polymer cantilevers should be as small as possible, while for silicon nitride cantilevers, there exists an optimal value. These results help to understand the sensitivity and reproducibility of biosensors.
机译:通过能量法研究了微悬臂DNA生物传感器的热效应。基于DNA溶液的液晶理论和层状悬臂的两变量方法,提供了生物相互作用和热载荷相结合的纳米机械悬臂运动的解析模型,然后将其扩展为T形悬臂。然后,讨论了DNA生物膜的化学物理性质(即,接枝密度,核苷酸数目和离子强度)和温度变化对挠度的影响。为了减少噪声信号,还研究了不同基材和离子强度的悬臂的控制温度和尺寸优化。结果表明,SU-8聚合物悬臂梁可以保持分子吸附的敏感性和热稳定性,与相关实验吻合得很好。 SU-8聚合物悬臂的层厚比应尽可能小,而氮化硅悬臂则存在最佳值。这些结果有助于了解生物传感器的敏感性和可重复性。

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