IP Library Granted Patent US 9,439,585
Granted Patent B2
US 9,439,585 · App. 12/864,277 · Granted Sep 13, 2016

Semiconductor based analyte sensors and methods

Inventors: Mu Wu (Hopewell Junction, NY); Jiangfeng Fei (Sleepy Hollow, NY); Serban Peteu (East Lansing, MI); Hoi-Cheong Steve Sun (Mount Kisco, NY); Raeann Gifford (Cortlandt Manor, NY)
Assignee: Ascensia Diabetes Care Holdings AG
A61B5/14532A61B5/14865
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Quick Facts
Patent No.
US 9,439,585
App. No.
12/864,277
Granted
Sep 13, 2016
Kind
B2
Abstract

An analyte sensor is provided that comprises a substrate which includes a semiconductor material. Embodiments may include a core of a conductive material, and a cladding of a semiconductor material, in which the cladding may form at least a portion of a conducting path for a working electrode of the analyte sensor. Method of manufacturing and using the analyte sensor are described, as are numerous other aspects.

Claims (20)

1. An analyte sensor, comprising:

a substrate including a core of conductive material and a cladding of a semiconductor material, wherein the cladding is disposed around the core,

a protective layer disposed concentrically around, immediately adjacent, and in contact with the substrate, the protective layer including a base layer positioned between a reference electrode and the cladding, wherein an additional layer covers the reference electrode, and

a working electrode formed from a portion of the cladding not covered by the protective layer, the working electrode being at least partially coated with an electrochemically-active layer formed from at least one of a noble metal, carbon nanotubes, and a conductive polymer,

an active region positioned on the substrate and adapted to be exposed to a fluid environment, the active region including an agent on the electrochemically-active layer on the working electrode.

2. The analyte sensor of claim 1 , wherein the cladding has a tensile strength of at least 1000 MPa.

3. The analyte sensor of claim 1 , wherein the conductive material comprises carbon.

4. The analyte sensor of claim 1 , wherein the substrate has a diameter of 150 microns or less.

5. The analyte sensor of claim 1 , wherein the substrate has a diameter of about 75 to 150 microns.

6. The analyte sensor of claim 1 , wherein the substrate has a length of about 2.5 mm to 100 mm.

7. The analyte sensor of claim 1 , wherein the semiconductor material comprises silicon carbide.

8. The analyte sensor of claim 1 , wherein the agent includes a catalyst agent, wherein the catalyst agent is adapted to convert an analyte within the fluid environment into a product from which an electrical current is generated at the working electrode.

9. The analyte sensor of claim 8 , wherein the portion of the cladding forming the working electrode is 1% to 50% covered by the electrochemically-active layer.

10. The analyte sensor of claim 8 , wherein the portion of the cladding forming the working electrode is 51% to 100% covered by the electrochemically-active layer which has a thickness of less than a micron.

11. The analyte sensor of claim 10 , wherein the electrochemically-active layer includes at least one of platinum, gold, palladium, and rhodium.

12. The analyte sensor of claim 8 , further comprising:

a mediator adapted to provide a transfer of electrons from the catalytic agent to produce an electrical current reading correlative with an analyte concentration level is derived.

13. The analyte sensor of claim 1 , wherein the substrate is cylindrical.

14. The analyte sensor of claim 1 , wherein the substrate is planar.

15. The analyte sensor of claim 1 , wherein the substrate includes a point forming a lancet adapted to facilitate insertion.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 5, 2016
From: BAYER HEALTHCARE LLC
To: ASCENSIA DIABETES CARE HOLDINGS AG
Reel/Frame 038009/0227 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2010
From: WU, MU; FEI, JIANGFENG; PETEU, SERBAN; SUN, HOI-CHEONG STEVE; GIFFORD, RAEANN
To: BAYER HEALTHCARE LLC
Reel/Frame 024961/0038 →
Continuity (2)
Provisional Application 61026081 · Feb 4, 2008
Related Publication 20100298679A1 · Nov 25, 2010