H. Hisamoto et al., FLOW-THROUGH TYPE CALCIUM-ION SELECTIVE OPTODES BASED ON NOVEL NEUTRAL IONOPHORES AND A LIPOPHILIC ANIONIC DYE, Analytica chimica acta, 299(2), 1994, pp. 179-187
Flow-through type calcium ion selective optodes based on novel neutral
ionophores and a lipophilic anionic dye were developed. The novel cal
cium ion selective neutral ionophores designed and synthesized were do
uble-armed diazacrown ether compounds possessing glycolic amides as th
e binding arms. Cation sensing material was prepared by coating pellic
ular-type ODS (octadecylsilica) beads with a lipophilic organic liquid
which incorporates a novel neutral calcium ionophore and a Lipophilic
anionic dye of the diphenyl amine type. These beads were packed in a
flow-through optical cell, and the Ca2+ measurement was performed to m
easure the absorbance change of the sensing beads at 516 nm. The best
optode tested exhibited a good response to calcium ions in the concent
ration range from 10(-7) M to 10(-1) M with 0.05 M Tris-HCl of pH 7.0
as the flowing buffer solution. This optode showed excellent Ca2+ sele
ctivity of over 10(-4) in selectivity coefficient values (k(i,j)(opt.)
, i = primary ion (Ca2+); j = interfering ion) against Na+, K+ and Mg2
+ which are primary interferents for human serum analysis. Sensor resp
onse theory, response time, selectivity, and application to the determ
ination of calcium ion concentration in human serum were also discusse
d together with experimental results.