ACS Sensors · 2017 · 60 citations · 36 references
A novel design is demonstrated for a solid state, reagent-less sensor capable of rapid and simultaneous measurement of pH and Total Alkalinity (A<sub>T</sub>) using ion sensitive field effect transistor (ISFET) technology to provide a simplified means of characterization of the aqueous carbon dioxide system through measurement of two "master variables": pH and A<sub>T</sub>. ISFET-based pH sensors that achieve 0.001 precision are widely used in various oceanographic applications. A modified ISFET is demonstrated to perform a nanoliter-scale acid-base titration of A<sub>T</sub> in under 40 s. This method of measuring A<sub>T</sub>, a Coulometric Diffusion Titration, involves electrolytic generation of titrant, H<sup>+</sup>, through the electrolysis of water on the surface of the chip via a microfabricated electrode eliminating the requirement of external reagents. Characterization has been performed in seawater as well as titrating individual components (i.e., OH<sup>-</sup>, HCO<sub>3</sub><sup>-</sup>, CO<sub>3</sub><sup>2-</sup>, B(OH)<sub>4</sub><sup>-</sup>, PO<sub>4</sub><sup>3-</sup>) of seawater A<sub>T</sub>. The seawater measurements are consistent with the design in reaching the benchmark goal of 0.5% precision in A<sub>T</sub> over the range of seawater A<sub>T</sub> of ∼2200-2500 μmol kg<sup>-1</sup> which demonstrates great potential for autonomous sensing.
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