Scientific Reports · 2017 · 82 citations · 32 references
EngineeringBiomedical EngineeringChemistryBiosensorsIon ProcessIsfet SensorPh ResponseIsfet Ph SensitivityField Effect SensorsInstrumentationBiophysicsElectrical EngineeringIon ExchangeMicroelectronicsSensorsBioelectronicsElectrophysiologySensor DesignElectroanalytical Sensor
The Field Effect sensors are broadly used for detecting various target analytes in chemical and biological solutions. We report the conditions under which the pH sensitivity of an Ion Sensitive Field Effect transistor (ISFET) sensor can be significantly enhanced. Our theory and simulations show that by using pH buffer solutions containing counter-ions that are beyond a specific size, the sensor shows significantly higher sensitivity which can exceed the Nernst limit. We validate the theory by measuring the pH response of an extended gate ISFET pH sensor. The consistency and reproducibility of the measurement results have been recorded in hysteresis free and stable operations. Different conditions have been tested to confirm the accuracy and validity of our experiment results such as using different solutions, various oxide dielectrics as the sensing layer and off-the-shelf versus IC fabricated transistors as the basis of the ISFET sensor.
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Bharat Bhushan · 2016 · 3.8K citations
P. Bergveld · Sensors and Actuators B Chemical · 2002 · 1.5K citations
Site-binding model of the electrical double layer at the oxide/water interface
David E. Yates, S. Levine, Thomas W. Healy · Journal of the Chemical Society Faraday Transactions 1 Physical Chemistry in Condensed Phases · 1974 · 1.3K citations
Engineering, Electrode-electrolyte Interface, Site-binding Model +21