IP Library Patent Application 17979204
Patent Application
App. No. 17/979,204

MICRO-PILLAR WORKING ELECTRODES DESIGN TO REDUCE BACKFLOW OF HYDROGEN PEROXIDE IN GLUCOSE SENSOR

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Patent No.
US None
App. No.
17/979,204
Abstract

An electrochemical sensor including a working electrode having an arrangement of pillars defining channels between the pillars. The channels increase confinement of a byproduct produced in an electrochemical reaction used during sensing of an analyte, so as to increase interaction of the byproduct with the working electrode. A number of working embodiments of the invention are shown to be useful in amperometric glucose sensors worn by diabetic individuals.

Claims (36)

1 . A sensor electrode, comprising:

a base substrate;

an electrode including an arrangement of pillars defining channels disposed on the base substrate, wherein the pillars form an electroactive surface of the electrode; and

an analyte sensing layer coupled to the electrode, the analyte sensing layer comprising glucose oxidase catalyzing a reaction between glucose and oxygen to form a byproduct comprising hydrogen peroxide, the byproduct detectably altering an electrical current at the electrode; and

an analyte modulating layer for facilitating diffusion of the glucose and the oxygen through a thickness of the analyte modulating layer to the analyte sensing layer; and

wherein the channels distribute the oxygen throughout the working electrode so that the electrical current can be used to obtain a more accurate reading of a concentration of the glucose.

2 . The sensor electrode of claim 1 , wherein the pillars have a diameter in a range of 0.001-1000 micrometers, a height in a range of 0.001-1000 micrometers, and a spacing in a range of 0.001-1000 micrometers.

3 . The sensor electrode of claim 1 , wherein the pillars have a diameter in a range of 10-15 micrometers, a height in a range of 10-15 micrometers, and a spacing in a range of 10-15 micrometers.

4 . The sensor electrode of claim 1 , wherein the pillars have a diameter in a range of 5-25 micrometers, a height in a range of 5-25 micrometers, and a spacing in a range of 5-25 micrometers.

5 . The sensor electrode of claim 1 , wherein the arrangement comprises a hexagonal pattern.

6 . The sensor electrode of claim 1 , wherein the arrangement comprises a serpentine pattern.

7 . The sensor electrode of claim 1 , wherein the analyte modulation layer is disposed directly on top of the pillars and over the analyte sensing layer in the channels.

8 . The sensor electrode of claim 1 , wherein the glucose oxidase is at least partially disposed in the channels in spaces between the pillars.

9 . The sensor electrode of claim 1 , wherein the channels increase diffusion of the hydrogen peroxide towards sidewalls of the pillars.

10 . The sensor electrode of claim 1 , wherein the pillars include a metal composition comprising at least one metal selected from platinum, gold, silver, copper, titanium, chromium, or iridium.

11 . A glucose sensor comprising the sensor electrode of claim 1 .

12 . The glucose sensor of claim 11 , wherein the arrangement of pillars is such that the electrical current has increased stability, as characterized by a reduced decay of the electrical current as:

a concentration of the oxygen is increased, and

as compared to the glucose sensor without the pillars.

13 . A sensor electrode, comprising:

a base substrate;

an electrode including an arrangement of pillars defining channels disposed on the base substrate, wherein the pillars form an electroactive surface of the electrode; and

an analyte sensing layer at least partially disposed in the channels in spaces between the pillars, wherein the analyte sensor layer causes a reaction with an analyte to form a byproduct altering an electrical current at the electrode; and

wherein the channels increase diffusion of the byproduct to sidewalls of the pillars.

14 . The sensor electrode of claim 13 , wherein the analyte comprises glucose and the reaction is between the glucose and oxygen to form the byproduct comprising hydrogen peroxide.

15 . The sensor electrode of claim 14 , wherein the analyte sensor layer comprises glucose oxidase catalyzing the reaction.

16 . A method of making a sensor electrode, comprising:

providing a base substrate;

forming an electrode including an arrangement of pillars defining channels disposed on the base substrate, wherein the pillars form an electroactive surface of the electrode; and

coupling an analyte sensing layer to the electrode, the analyte sensing layer comprising glucose oxidase catalyzing a reaction between glucose and oxygen to form a byproduct comprising hydrogen peroxide, the byproduct detectably altering an electrical current at the electrode; and

disposing an analyte modulating layer facilitating diffusion of the glucose and the oxygen through a thickness of the analyte modulating layer to the analyte sensing layer; and

wherein the channels distribute the oxygen throughout the working electrode so that the electrical current can be used to obtain a more accurate reading of a concentration of the glucose.

17 . The method of claim 16 , wherein the analyte modulation layer is disposed directly on top of the pillars and over the analyte sensing layer in the channels.

18 . The method of claim 16 , wherein the glucose oxidase is at least partially disposed in the channels in spaces between the pillars.

19 . The method of claim 16 , wherein the channels are configured to increase diffusion of the hydrogen peroxide towards sidewalls of the pillars

20 . The method of claim 16 , further comprising providing the sensor electrode in a glucose sensor.

Assignments (2)
SECURITY INTEREST Recorded Jan 16, 2026
From: MEDTRONIC MINIMED, INC.; COMPANION MEDICAL, INC.
To: CITIBANK, N.A.
Reel/Frame 074394/0237 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 12, 2023
From: SUN, ZHENZHONG; HENG, XIN; KONG, RUI
To: MEDTRONIC MINIMED, INC.
Reel/Frame 062362/0037 →