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Piezoresistive chemical sensors based on hydrogels

机译:基于水凝胶的压阻化学传感器

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Already eight years ago, the usage of piezoresistive sensors for chemical measurands was proposed at the Solid State Electronics Laboratory of the Dresden University of Technology. Adding functionalised polymer coating which shows swelling due to chemical or biological values leads to a similar deflection of the thin silicon bending plate like for pressure sensors.rnThe application of "stimuli-responsive" or "smart" cross-linked gels in chemical sensors is based on their ability to a phase transition under the influence of external excitations (pH, concentration of additives in water, temperature). Combining a "smart" hydrogel and a micro fabricated pressure sensor chip allows to continuously monitor the analyte-dependent swelling of a hydrogel and hence the analyte concentration in ambient aqueous solutions. The sensitivity of hydrogels with regard to the concentration of such additives as H~+-ions (pH sensor), transition-metal ions, salts, organic solvents and proteins in water was investigated. It has been demonstrated that the sensor's sensitivity depends on the polymer composition as well as on the polymer cross-linking degree. Time constants down to a few ten seconds have been found for thin hydrogel films deposited directly on the backside of the silicon bending plate. In order to achieve an optimum between sensor signal amplitude and sensor response time, the gel swelling/deswelling kinetics was investigated. Some methods improving the properties of the chemical sensors have been proposed. The long-term measurements have shown that the lifetime of piezoresistive chemical sensors can be prolonged up to several years provided that specific operation and storage conditions are fulfilled.
机译:早在八年前,德累斯顿工业大学的固态电子实验室就提出将压阻传感器用于化学测量。添加功能化的聚合物涂层(由于化学或生物学价值而显示溶胀)会导致薄硅弯曲板发生类似的挠曲,例如压力传感器。rn“刺激敏感”或“智能”交联凝胶在化学传感器中的应用是基于它们在外部激励(pH,水中添加剂浓度,温度)影响下的相变能力。将“智能”水凝胶和微型制造的压力传感器芯片组合在一起,可以连续监测水凝胶的分析物依赖性溶胀,从而监测环境水溶液中分析物的浓度。研究了水凝胶对水中H〜+离子(pH传感器),过渡金属离子,盐,有机溶剂和蛋白质等添加剂浓度的敏感性。已经证明传感器的灵敏度取决于聚合物组成以及聚合物交联度。对于直接沉积在硅弯曲板背面的薄水凝胶薄膜,发现时间常数低至几十秒。为了在传感器信号幅度和传感器响应时间之间达到最佳,对凝胶溶胀/溶胀动力学进行了研究。已经提出了一些改善化学传感器性能的方法。长期测量表明,只要满足特定的操作和存储条件,压阻式化学传感器的使用寿命可以延长到几年。

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