A ternary Fe(II)-terpyridyl complex-based single platform for reversible multiple-ion recognition

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Multiple ion-recognition activity by a ternary Fe(ii)-terpyridyl complex, [Fe(PhT)(PT)12 (1) (PhT = 4'-pheny12,2`:6',2"-terpyricline; PT = 4'-pyridyl-2,2":6`,2"-terpyridine), is demonstrated for cyanide (CN-1, fluoride (F-1 and hydroxide (OH-) ions in an aqueous medium with sufficient sensitivity, fast response, reproducibility and selectivity with a dual optical read-out. The sensing event was reversible with the "by-eye" visualization of back and forth colour changes. Three cyanide ions replaced PT from 1, as observed from the crystal structure of the 1 I CN-couple. Fluoride and hydroxide ions appeared to show multivariate interactions with 1. Observed structural and spectral changes correlated well with theoretical calculations. A string of cations at quantitative levels (Ag2+/Hg2+/Fe2+/Fe3+) was used to decouple the 1 + anion complex to yield 1 which enabled the recognition of these cations while permitting the reuse of 1 for at least five set-reset cycles.
Publisher
ROYAL SOC CHEMISTRY
Issue Date
2018-05
Language
English
Article Type
Article
Keywords

MIXED-LIGAND COMPLEXES; TERPYRIDYL COMPLEXES; FLUORIDE-ION; MOLECULAR SENSORS; ANION RECOGNITION; AQUEOUS-SOLUTIONS; HYDROXIDE IONS; EXCITED-STATE; CYANIDE IONS; FLUORESCENCE

Citation

DALTON TRANSACTIONS, v.47, no.18, pp.6386 - 6393

ISSN
1477-9226
DOI
10.1039/c8dt00539g
URI
http://hdl.handle.net/10203/242336
Appears in Collection
RIMS Journal Papers
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