In situ-generated microfluidic assay structures, related kits, and methods of use thereof
US-2017184583-A1 · Jun 29, 2017 · US
US11187668B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11187668-B2 |
| Application number | US-201816135150-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 19, 2018 |
| Priority date | Sep 21, 2017 |
| Publication date | Nov 30, 2021 |
| Grant date | Nov 30, 2021 |
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.
The present disclosure includes to a sensor element including a membrane having a first functionalized region and a second functionalized region and including a sensor element body on which the membrane rests. The sensor element body has at least one electrically conductive first conductor and an electrically conductive second conductor electrically insulated from the first conductor. The first conductor is electrically and/or electrolytically conductively connected to the first functionalized region of the membrane, and the second conductor is electrically and/or electrolytically conductively connected to the second functionalized region of the membrane. In another aspect of the present disclosure, a method for fabricating such a sensor element is disclosed.
Opening claim text (preview).
The invention claimed is: 1. A sensor element comprising: a sensor element body including an electrically conductive first conductor and an electrically conductive second conductor insulated from the first conductor; and a polymer membrane including a first functionalized region and a second functionalized region different from the first functionalized region, the membrane seated on the sensor element body, wherein the first conductor is electrically and/or electrolytically conductively in contact with the first functionalized region of the membrane such that a first ion is detectable by the sensor element, wherein the second conductor is electrically and/or electrolytically conductively connected to the second functionalized region of the membrane such that a second ion different from the first ion is detectable by the sensor element, wherein the sensor element body includes a surface on which a polymer layer is disposed, wherein the polymer layer has an electrically and/or ionically conductive first partial region and an electrically and/or ionically conductive second partial region, and wherein the membrane seats on the polymer layer such that the first partial region of the polymer layer contacts the first functionalized region of the membrane and the second partial region of the polymer layer contacts the second functionalized region of the membrane. 2. The sensor element of claim 1 , wherein the first functionalized region includes first molecules contained in the membrane or first functional groups bonded to the membrane that interact physically or chemically with a first analyte, and wherein the second functionalized region includes second molecules contained in the membrane or second functional groups bonded to the membrane that interact physically or chemically with a second analyte different from the first analyte. 3. The sensor element of claim 1 , wherein the first partial region and second partial region of the polymer layer are formed of a doped, intrinsically conductive polymer. 4. The sensor element of claim 1 , wherein the first partial region of the polymer layer is electrically insulated from the second partial region of the polymer layer. 5. The sensor element of claim 1 , wherein the polymer layer is at least two separate and electrically insulated layer elements of an electronically and/or ionically conductive polymer, wherein a first layer element forms the first partial region of the polymer layer, and a second layer element forms the second partial region of the polymer layer. 6. The sensor element of claim 1 , wherein the polymer layer is a closed polymer layer of an intrinsically conductive polymer that is doped in the first partial region and in the second partial region such that the polymer layer is electronically and/or ionically conductive in the first partial region. 7. The sensor element of claim 1 , wherein the first conductor and second conductor are, in at least one portion, each configured as a conductor trace on the surface of the sensor element body, which portion is in contact with the polymer layer and is electrically conductively connected to a contact point on a side of the sensor element body opposite the membrane. 8. The sensor element of claim 1 , wherein the surface of the sensor element body is substantially planar and includes at least two depressions, which define cavities separated from one another, wherein the membrane seats on the substantially planar surface of the sensor element body and covers the cavities, and wherein a first cavity of the cavities is covered at least partially by the first functionalized region of the membrane, and a second cavity of the cavities is covered at least partially by the second functionalized region of the membrane. 9. The sensor element of claim 8 , wherein the polymer layer comprises: a first electronically and/or ionically conductive polymer comprising the first partial region disposed adjacent the first cavity and contacting the first functionalized region of the membrane on a rear side thereof; and a second electronically and/or ionically conductive polymer comprising the second partial region disposed adjacent the second cavity and contacting the second functionalized region of the membrane on the rear side, wherein the first conductor is in contact with the first polymer, and the second conductor is in contact with the second polymer, and wherein the first and second conductors are each electrically conductively connected to an electrical contact point disposed outside the cavity. 10. The sensor element of claim 9 , further comprising: a first internal electrolyte contained in the first cavity and contacting the first functionalized region of the membrane on the rear side; and a second internal electrolyte contained in the second cavity and contacting the second functionalized region of the membrane on the rear side, wherein the first conductor is in contact with the first internal electrolyte, and the second conductor is in contact with the second internal electrolyte, and wherein the first conductor and second conductor are each electrically conductively connected to the electrical contact point. 11. The sensor element of claim 8 , further comprising a support structure, wherein the membrane is fixed between the surface of the sensor element body and the support structure abutting a rear side of the membrane, the rear side opposite the surface of the sensor element body, and wherein the support structure includes openings therethrough that leave at least partially exposed regions of the membrane that cover the cavities. 12. The sensor element of claim 1 , wherein the sensor element body includes a plurality of electronically conductive conductors electrically insulated from each other, and wherein the membrane includes a plurality of functionalized regions, which include the first and second functionalized regions, wherein each of the plurality of functionalized regions is electrically and/or electrolytically conductively connected to one of the plurality of conductors. 13. The sensor element of claim 1 , wherein the membrane includes a dye in the first and second functionalized regions. 14. A sensor comprising: a sensor element including: a sensor element body including an electrically conductive first conductor and an electrically conductive second conductor insulated from the first conductor; and a polymer membrane including a first functionalized region and a second functionalized region different from the first functionalized region, the membrane seated on the sensor element body, wherein the first conductor is electrically and/or electrolytically conductively in contact with the first functionalized region of the membrane such that a first ion is detectable by the sensor element, and wherein the second conductor is electrically and/or electrolytically conductively connected to the second functionalized region of the membrane such that a second ion different from the first ion is detectable by the sensor element, wherein the sensor element body includes a surface on which a polymer layer is disposed, wherein the polymer layer has an electrically and/or ionically conductive first partial region and an electrically and/or ionically conductive second partial region, and wherein the membrane seats on the polymer layer such that the first partial region of the polymer layer contacts the first functionalized region of the membrane and the second partial region of the polymer layer contacts the second functionalized region of the membrane; a sensor body including a housing releasably connected to the sensor element; and a sens
the membrane containing at least one organic component (G01N27/3271 takes precedence; aspects concerning the enzyme reagent in enzyme electrodes C12Q1/001) · CPC title
Ion-selective electrodes or membranes (glass electrodes G01N27/36) · CPC title
Combination of a single ion-sensing electrode and a single reference electrode (G01N27/406 and G01N27/413 take precedence) · CPC title
Half-cells with permeable membranes, e.g. semi-porous or perm-selective membranes · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.