4.3 Article

Highly selective solid-state sensor for iodide based on the combined use of platinum (IV) phthalocyanine and solidified pyridinium ionic liquid

期刊

JOURNAL OF SOLID STATE ELECTROCHEMISTRY
卷 23, 期 2, 页码 543-552

出版社

SPRINGER
DOI: 10.1007/s10008-018-4159-9

关键词

Ion-selective electrodes; Iodide-selective electrodes; Platinum phthalocyanine; Ionic liquids; Low-melting ionic materials; N-Cetylpyridinium chloride; N-Cetylpyridinium bromide; 1; 3-Dicetylimidazolium iodide; Iodide; Synthesis of platinum (IV) phthalocyanine

资金

  1. Russian Science Foundation [17-13-01197]
  2. Russian Science Foundation [17-13-01197] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

Solid-state iodide-selective electrodes based on the commercial screen-printed electrodes modified with readily available low-melting ionic material (ionic liquid solidifying at room temperature), such as N-cetylpyridinium bromide, CPBr, and a specially synthesized metallo-complex, namely, platinum (IV) phthalocyanine, (PcPtCl2)-Pt-t, are obtained. For comparison, PVC-membrane ion-selective electrodes (ISE) based on the same compounds and solid-state ISEs with other solid matrices (N-cetylpyridinium chloride, 1,3-dicetylimidazolium iodide) are studied. Plasticized PVC-membrane ISEs exhibit normal selectivity corresponding to the Hofmeister series: interfering effect of large hydrophobic ions (perchlorate, dodecyl sulfate, etc.) is significant. Incorporation of (PcPtCl2)-Pt-t metallo-complex into plasticized membranes improves selectivity to a certain extent, but not dramatically. At the same time, the CPBr-based solid-state ISEs demonstrate high selectivity toward iodide even in the presence of hydrophobic anions: the interfering effect of perchlorate and dodecyl sulfate decreases by 3 and 6 orders of magnitude, respectively. The introduction of the metallo-complex into the matrix improves selectivity even more significantly. The CPBr-(PcPtCl2)-Pt-t-based solid-state sensor demonstrates a reversible and reproducible response to iodide. The electrode function slope S=-(54 +/- 1)mV/dec, C-min=1.9x10(-5)M, response time is 5-10s.

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