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Investigation of Polyurethane Matrix Membranes for Salivary Nitrate ISFETs to Prevent the Drift

机译:唾液硝酸盐ISFET的聚氨酯基膜的研究以防止漂移

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摘要

We have investigated human-stress monitoring by making use of salivary nitrate, which can be a candidate for stress markers, with ion-selective field-effect transistors (ISFETs). ISFETs are suitable for on-site single-drop analysis of salivary nitrate within 10 s. However, when ISFETs are used for salivary nitrate, ISFETs have a problem that is called the initial drift. The initial drift makes accurate nitrate monitoring difficult. Thus, the purpose of this study is to prevent the initial drift and to search for a new, simple polymer to possess a better performance of sensor responses than conventional matrix membranes, such as PVC. In this research, we investigated ISFETs using specific matrix membranes, for example KP-13, Pellethane®­­, and P7281-PU. The initial drift was evaluated from the fluctuations of the response values generated by the ISFETs when immersed in saliva or aqueous solution. As a result, P7281-PU showed a prevention effect on the initial drift, both in the whole saliva and in various solutions. Furthermore, the cause of drift may be H+ diffusion, and the drift prevention effect of P7281-PU may be affected by urethane bond capturing H+ in the ion-selective membrane. This result suggests that a continuous nitrate monitoring is feasible and may be applied to wearable sensors.
机译:我们已经利用离子选择性场效应晶体管(ISFET)通过使用唾液硝酸盐(可以作为压力标记的候选物)研究了人体压力监测。 ISFET适用于10秒内对唾液硝酸盐进行现场单滴分析。但是,当将ISFET用于唾液硝酸盐时,ISFET具有称为初始漂移的问题。初始漂移使精确的硝酸盐监测变得困难。因此,本研究的目的是防止初始漂移并寻找一种新的,简单的聚合物,以使其具有比传统基质膜(例如PVC)更好的传感器响应性能。在这项研究中,我们研究了使用特定基质膜(例如KP-13,Pellethane ® ­和P7281-PU)的ISFET。从ISFET浸入唾液或水溶液中时产生的响应值的波动来评估初始漂移。结果,P7281-PU在整个唾液和各种溶液中均显示出对初始漂移的预防作用。此外,漂移的原因可能是H + 扩散,P7281-PU的防漂移效果可能受到离子选择膜中氨基甲酸酯键捕获H + 的影响。 。该结果表明,连续的硝酸盐监测是可行的,并可应用于可穿戴传感器。

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