| Literature DB >> 35518628 |
Abstract
This paper reports the pH sensing capability of a ruthenium oxide (RuO2) and iridium oxide (IrO2) coated titanium (ROIOT) electrode. The characterization results indicated that the ROIOT electrode had a cracked morphology. The RuO2 and IrO2 particles were decorated on the surface of the electrode. The ROIOT electrode showed near-Nernstian sensitivity of -50.8 mV pH-1, with a wide detection range of pH 2-12. The response time was 4.0-13.5 s, which was fast and very sensitive to the pH change. The ROIOT electrode also demonstrated great detection reversibility and stability in various pH conditions. In the long-term experiment of 30 d, potential measurements using the ROIOT electrode had a minor fluctuation of 1.5 mV d-1. The practical application of the ROIOT electrode was demonstrated by measuring the pH values of various buffer solutions and complex samples. With the advantages of low cost and simple production, it is believed that the ROIOT electrode could be a promising candidate for use as a sensing material for pH sensor development. This journal is © The Royal Society of Chemistry.Entities:
Year: 2020 PMID: 35518628 PMCID: PMC9055342 DOI: 10.1039/d0ra04337k
Source DB: PubMed Journal: RSC Adv ISSN: 2046-2069 Impact factor: 3.361
Fig. 1(a) The SEM image of the ROIOT electrode. (b) The XRD pattern of the ROIOT electrode.
Fig. 2Cyclic voltammograms of the ROIOT electrode in different solutions. (a) 0.5 M H2SO4, (b) pH = 2, 6 and 12 buffer solutions. Scan rate: 50 mV s−1.
Fig. 3(a) Schematic illustration of experimental setup. (b) Potential responses of the ROIOT electrode and the titanium electrode in a gradient of pH buffer solutions. (c) Real-time potential responses of the ROIOT electrode in pH 2–12 for 15 min. (d) Potential response of the ROIOT electrode to pH changes. (e) Long-term stability of ROIOT electrode for 30 days.
Practical pH measurements from the ROIOT electrode and the glass electrode-based pH meter
| Samples | ROIOT electrode (pH) | pH meter (pH) |
|---|---|---|
| Potassium biphthalate buffer | 4.19 | 4.06 |
| Phosphate buffer | 7.16 | 6.86 |
| Sodium tetraborate buffer | 8.75 | 9.00 |
| Vinegar | 2.24 | 2.65 |
| Apple juice | 3.37 | 3.31 |
| Beer | 4.32 | 4.43 |
| Milk | 6.54 | 6.64 |
| Tap water | 7.64 | 7.05 |
| Soapy water | 9.09 | 8.98 |
| Washing detergent | 10.73 | 10.62 |
Summary of the sensing performance in iridium oxide, ruthenium oxide and in this work
| Sensing materials | Detection range (pH) | Sensitivity (mV pH−1) | Response time (s) |
|---|---|---|---|
| Iridium oxide[ | 1.5–12 | 51.1–51.7 | <2 |
| Iridium oxide[ | 2.38–11.61 | 59.5 | <2 |
| Ruthenium oxide[ | 2–12 | 54.83–68.63 | 3–73.5 |
| Ruthenium oxide[ | 2–10 | 58 | <2 |
| This work | 2–12 | 50.8 | 4.0–13.5 |