Asymmetric carbonate ion-selective cellulose acetate membrane electrodes with reduced salicylate interference

The asymmetric carbonate ion-selective cellulose triacetate membrane electrodes are used to reduce salicylate interference for total CO sub(2) measurements in human serum samples. The asymmetric membranes are formed by first casting a thin layer of cellulose triacetate without carrier, hydrolyzing o...

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Published inAnalytical chemistry (Washington) Vol. 65; no. 21; pp. 3151 - 3155
Main Authors Lee, Kang Shin, Shin, Jae Ho, Han, Sang Hyun, Cha, Geun Sig, Shin, Doo Soon, Kim, Hai Dong
Format Journal Article
LanguageEnglish
Published Washington, DC American Chemical Society 01.11.1993
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ISSN0003-2700
1520-6882
DOI10.1021/ac00069a033

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Abstract The asymmetric carbonate ion-selective cellulose triacetate membrane electrodes are used to reduce salicylate interference for total CO sub(2) measurements in human serum samples. The asymmetric membranes are formed by first casting a thin layer of cellulose triacetate without carrier, hydrolyzing one side of this thin film with base, and, subsequently, casting a second layer of cellulose triacetate containing the membrane active components [i.e., (trifluoracetyl)-p-butylbenzene as a neutral ionophore]. The resulting asymmetric carbonate-selective membranes function equivalently, in terms of the carbonate response, to conventional PVC-based membranes. However, asymmetric membranes exhibited a reduced and slower response toward large lipophilic anions such as perchlorate or salicylate compared to PVC-based membranes, while both membranes showed similar response characteristics toward smaller hydrophilic anions such as carbonate. The asymmetric carbonate ion-selective membranes can be used to enhance the selectivity for carbonate ion over other large anions by employing either the flow-through or the equilibrium (static) arrangements. For preliminary applications, the asymmetric carbonate ion-selective membranes were utilized to determine total CO sub(2) contents in flowing or static solutions containing salicylate interferences. It is shown that the asymmetric membranes are substantially less subject to salicylate interference compared to the conventional PVC-based membranes.
AbstractList The asymmetric carbonate ion-selective cellulose triacetate membrane electrodes are used to reduce salicylate interference for total CO sub(2) measurements in human serum samples. The asymmetric membranes are formed by first casting a thin layer of cellulose triacetate without carrier, hydrolyzing one side of this thin film with base, and, subsequently, casting a second layer of cellulose triacetate containing the membrane active components [i.e., (trifluoracetyl)-p-butylbenzene as a neutral ionophore]. The resulting asymmetric carbonate-selective membranes function equivalently, in terms of the carbonate response, to conventional PVC-based membranes. However, asymmetric membranes exhibited a reduced and slower response toward large lipophilic anions such as perchlorate or salicylate compared to PVC-based membranes, while both membranes showed similar response characteristics toward smaller hydrophilic anions such as carbonate. The asymmetric carbonate ion-selective membranes can be used to enhance the selectivity for carbonate ion over other large anions by employing either the flow-through or the equilibrium (static) arrangements. For preliminary applications, the asymmetric carbonate ion-selective membranes were utilized to determine total CO sub(2) contents in flowing or static solutions containing salicylate interferences. It is shown that the asymmetric membranes are substantially less subject to salicylate interference compared to the conventional PVC-based membranes.
The asymmetric carbonate ion-selective cellulose triacetate membrane electrodes are used to reduce salicylate interference for total carbon dioxide measurements in human serum samples.
Author Cha, Geun Sig
Shin, Jae Ho
Kim, Hai Dong
Han, Sang Hyun
Shin, Doo Soon
Lee, Kang Shin
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Issue 21
Keywords Human
Membrane electrode
Carbon dioxide
Experimental study
PVC plasticizer
Assay
Ion selective electrode
Ion exchange membrane
Sodium Hydrogenphosphates
Serum
Ionophore
Polyvinyl chloride
Electrochemical reaction
Sodium Dihydrogenphosphates
Flow injection
Modified material
Sodium Chlorides
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Snippet The asymmetric carbonate ion-selective cellulose triacetate membrane electrodes are used to reduce salicylate interference for total carbon dioxide...
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SubjectTerms Carbon dioxide
Cellulose acetate membranes
Chemistry
Electrochemistry
Electrodes
Electrodes: preparations and properties
Exact sciences and technology
General and physical chemistry
Ion selective electrodes
Ions
Membranes
Title Asymmetric carbonate ion-selective cellulose acetate membrane electrodes with reduced salicylate interference
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