Electroanalitical system
US-2015369775-A1 · Dec 24, 2015 · US
US9568450B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9568450-B2 |
| Application number | US-201113816091-A |
| Country | US |
| Kind code | B2 |
| Filing date | Aug 8, 2011 |
| Priority date | Aug 10, 2010 |
| Publication date | Feb 14, 2017 |
| Grant date | Feb 14, 2017 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A measuring arrangement for registering an analyte concentration in a measured medium includes a three electrode arrangement having a working electrode, a reference electrode and a counter electrode. The working electrode includes an analyte-insensitive, redox mediator, and the reference electrode a pH-sensitive electrode. The counter electrode can be formed of an inert, electrically conductive material. The measuring arrangement can be embodied to provide a desired voltage between the working electrode and the reference electrode and to register the electrical current flowing, in such case, through the measured medium, between the counter electrode and the working electrode.
Opening claim text (preview).
The invention claimed is: 1. A measuring arrangement for registering a concentration of a certain ion in a measured medium, comprising: a three electrode arrangement comprising a working electrode, a reference electrode and a counter electrode; and a potentiostatic control circuit configured to provide a desired voltage between the working electrode and the reference electrode by supplying an electrical current flowing through the measured medium between the counter electrode and the working electrode, the potentiostatic control circuit further configured to measure and operate upon the supplied electrical current to determine the concentration of the certain ion in the measured medium, wherein said working electrode includes a redox mediator insensitive to said ion and said reference electrode comprises an ion-sensitive electrode sensitive to said ion, and wherein no current is supplied to the reference electrode. 2. The measuring arrangement as claimed in claim 1 , wherein: the measuring arrangement is embodied to perform, by means of the three electrode arrangement voltammetric measurements. 3. The measuring arrangement as claimed in claim 1 , further comprising: a function generator, which is embodied to specify a voltage curve to be produced between said working electrode and said reference electrode, wherein: the measuring arrangement is embodied to register the electrical current flowing through the measured medium between said working electrode and said counter electrode, as a result of the specified voltage curve, as a function of the voltage produced provided between said reference electrode and said working electrode. 4. The measuring arrangement as claimed in claim 1 , further comprising: an evaluating system, which is embodied to ascertain, from an electrical current curve between said working electrode and said counter electrode registered in the case of a voltammetric measurement, a value of the desired voltage between said working electrode and said reference electrode, at which voltage the electrical current curve has a local extremum associated with an oxidation or reduction of the redox mediator, and from this value to derive an analyte concentration in the measured medium. 5. The measuring arrangement as claimed in claim 1 , wherein: said redox mediator is selected from the group consisting of Prussian, or Berlin, blue, analogs of Prussian, or Berlin, blue, derivatives of Prussian, or Berlin, blue, ferrocene, ferrocene analogs, ferrocene derivatives, ferroin, the redox system Ce3+/Ce4+ and the redox system I−/I2. 6. The measuring arrangement as claimed in claim 1 , wherein: said redox mediator is immobilized on an electrically conductive surface of said working electrode. 7. The measuring arrangement as claimed in claim 6 , wherein: said redox mediator is bound in a polymer film arranged on the surface of the working electrode. 8. The measuring arrangement as claimed in claim 1 , wherein: said working electrode comprises an inner electrolyte accommodated in a housing, into which a potential sensing element extends, the potential sensing element connected with a working electrode connection of the measuring arrangement, and said inner electrolyte is in electrically or electrolytically conductive contact with the measured medium via a liquid junction. 9. The measuring arrangement as claimed in claim 1 , wherein: said reference electrode comprises an inner electrolyte accommodated in a housing and an analyte sensitive membrane terminating the housing in a region provided for contact with the measured medium. 10. The measuring arrangement as claimed in claim 1 , wherein: said reference electrode comprises an ISFET-chip. 11. The measuring arrangement as claimed in claim 1 , wherein: the measuring arrangement is embodied to perform amperometric measurements via the three electrode arrangement. 12. A measuring arrangement comprising: a three electrode arrangement comprising a working electrode, a reference electrode and a counter electrode contacting a measured medium; a control circuit, which is embodied to provide between said working electrode and said reference electrode a desired voltage, and to register an electrical current flowing through the measured medium between said counter electrode and said working electrode needed to generate the desired voltage between said working electrode and said reference electrode without flowing a separate current through the reference electrode; a function generator embodied to specify a desired voltage curve as a function of time to be provided between said working electrode and said reference electrode; and an evaluating system embodied to ascertain, from an electrical current curve between the working electrode and the counter electrode registered in a voltammetric measurement, a value of the voltage between the working electrode and the reference electrode, at which value the corresponding electrical current flowing through the measured medium between the working electrode and the counter electrode has an extremum associated with an oxidation or reduction of a redox mediator, and to derive an ion concentration in the measured medium from the value, wherein said reference electrode comprises an ion-selective electrode, and said working electrode includes the redox mediator and said redox mediator is insensitive to the ion. 13. A measuring arrangement for registering a pH-value of a measured medium, comprising: a three electrode arrangement comprising a working electrode, a reference electrode and a counter electrode; a potentiostatic control circuit configured to provide a desired voltage between the working electrode and the reference electrode via an electrical current provided through the measured medium between said counter electrode and said working electrode, the electrical current generating the desired voltage between said working electrode and said reference electrode with no current flowing through the reference electrode, and the potentiostatic control circuit further configured to measure the electrical current; a function generator embodied to specify a desired voltage curve as a function of time to be provided between said working electrode and said reference electrode; and an evaluating system embodied to ascertain, from an electrical current curve between the working electrode and the counter electrode registered in a voltammetric measurement, a value of the voltage between the working electrode and the reference electrode, at which value the corresponding electrical current flowing between the working electrode and the counter electrode has an extremum associated with an oxidation or reduction of the redox mediator, and from this value of the voltage to the derive the pH-value in the measured medium, wherein said working electrode includes a pH-insensitive redox mediator and said reference electrode comprises a pH-sensitive electrode. 14. The measuring arrangement as claimed in claim 13 , wherein: said redox mediator is selected from the group consisting of Prussian blue or Berlin blue, analogs of Prussian blue or Berlin blue, derivatives of Prussian blue or Berlin blue, ferrocene, ferrocene analogs, ferrocene derivatives, ferroin, the redox system Ce3+/Ce4+, and the redox system I−/I2. 15. The measuring arrangement as claimed in claim 13 , wherein: said reference electrode comprises a pH-buffered inner electrolyte, accommodated in a housing and an a pH-sensitive membrane terminating the housing in a region provided for contact with the measured medium; or said reference electrode comprises a pH-sensitive I
pH sensitive, e.g. quinhydron, antimony or hydrogen electrodes (ion selective electrodes G01N27/333, glass electrodes G01N27/36) · CPC title
Systems (G01N27/27 takes precedence) · CPC title
Electrodes, e.g. test electrodes; Half-cells (G01N27/414 takes precedence) · CPC title
Systems involving the determination of the current at a single specific value, or small range of values, of applied voltage for producing selective measurement of one or more particular ionic species · CPC title
pH (electrodes therefor G01N27/302, G01N27/36) · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.