IP Library Granted Patent US 7,740,979
Granted Patent B2
US 7,740,979 · App. 10/954,389 · Granted Jun 22, 2010

Alkaline electrochemical cell capable of providing optimum discharge efficiencies at a high tech drain rate and a low drain rate

View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 7,740,979
App. No.
10/954,389
Granted
Jun 22, 2010
Kind
B2
Abstract

An alkaline electrochemical cell capable of providing optimum discharge efficiencies at both a high tech drain rate and a low drain rate is disclosed. In one embodiment, the ratio of the anode's electrochemical capacity to the cathode's electrochemical capacity is between 1.33:1 and 1.40:1 and the surface area of the anode to cathode interface is maximized.

Claims (36)

1. An electrochemical cell, comprising:

a cylindrical container housing a first electrode, a second electrode, an alkaline electrolyte, and a separator; said first electrode defines a tubular cavity therein and comprises manganese dioxide as an electrochemically active material, said first electrode's electrochemical capacity determined by multiplying the grams of manganese dioxide by 285 mAhr/g; said second electrode, disposed within said cavity, comprises zinc as an electrochemically active material, said second electrode's electrochemical capacity determined by multiplying the grams of zinc by 821 mAhr/g; said separator disposed at the interface between the first and second electrodes, wherein said cell is an LR6 size cell, the area of the interface is between 12.6 cm 2 and 13.2 cm 2 and the ratio of the second electrode's electrochemical capacity to the first electrode's electrochemical capacity is between 1.33:1 and 1.40:1, wherein said zinc consists of particulate zinc, and wherein said particulate zinc has a BET specific surface area greater than 400 cm 2 /g, a KOH absorption value of at least 14%, and a D 50 less than 130 microns.

2. The electrochemical cell of claim 1 wherein the ratio of the second electrode's electrochemical capacity to the first electrode's electrochemical capacity is at least 1.34:1.

3. The electrochemical cell of claim 1 wherein the ratio of the second electrode's electrochemical capacity to the first electrode's electrochemical capacity is at least 1.36:1.

4. The electrochemical cell of claim 1 wherein the ratio of the second electrode's electrochemical capacity to the first electrode's electrochemical capacity is at least 1.38:1.

5. The electrochemical cell of claim 1 wherein said cavity has an initial inside diameter of at least 9.52 mm and the outside diameter of said container is between 13.89 mm and 14.00 mm.

6. The electrochemical cell of claim 5 wherein said first electrode defines a single cavity.

7. The electrochemical cell of claim 1 wherein said first electrode is formed by impact molding.

8. The electrochemical cell of claim 1 , wherein the area of the interface is between 12.75 cm 2 and 13.10 cm 2 .

9. The electrochemical cell of claim 1 , wherein the area of the interface is between 12.90 cm 2 and 13.05 cm 2 .

10. The electrochemical cell of claim 1 , wherein said cell is an LR6 size cell, said second electrode has less than 50 ppm of mercury, a quantity of said alkaline electrolyte is in contact with said electrodes and separator, and said cell, if discharged at 250 milliamps constant current for one hour per day until said cell's closed circuit voltage falls below 0.90 volt, would have a minimum discharge efficiency of at least 81.0% based on said first electrode's electrochemical capacity.

11. The electrochemical cell of claim 10 , wherein said minimum discharge efficiency is at least 82.0%.

12. The electrochemical cell of claim 10 , wherein said minimum discharge efficiency is at least 83.0%.

13. The electrochemical cell of claim 10 , wherein said cell, if discharged across a 3.3 ohm resistor for four minutes per hour, eight hours per day, until said cell's closed circuit voltage falls below 0.9 volt, would have a minimum discharge efficiency of at least 78.0% based on said first electrode's electrochemical capacity.

14. The electrochemical cell of claim 13 , wherein said minimum discharge efficiency on the 3.3 ohm test is at least 80.0%.

15. The electrochemical cell of claim 13 , wherein said minimum discharge efficiency on the 3.3 ohm test is at least 82.0%.

16. The electrochemical cell of claim 10 comprising a single first electrode and a single second electrode.

17. The electrochemical cell of claim 1 , wherein said cell is an LR6 size cell, said second electrode has less than 50 ppm of mercury, a quantity of said alkaline electrolyte is in contact with said electrodes and separator, and said cell, if continuously discharged at a rate of 100 milliamps for one hour per day until said cell's closed circuit voltage falls below 0.90 volt, would have a minimum discharge efficiency of at least 93.0% based on said first electrode's electrochemical capacity.

18. The electrochemical cells of claim 17 , wherein said cell's discharge efficiency is at least 94.4%.

19. The electrochemical cells of claim 17 , wherein said cell's discharge efficiency is at least 95.7%.

20. The electrochemical cells of claim 17 , wherein said cell, if discharged at 250 milliamps constant current for one hour per day until said cell's closed circuit voltage falls below 0.90 volt, would have a minimum discharge efficiency of at least 81.0% based on said first electrode's electrochemical capacity.

21. The electrochemical cells of claim 20 , wherein said cell's discharge efficiency is at least 82.0%.

22. The electrochemical cells of claim 20 , wherein said cell's discharge efficiency is at least 83.0%.

23. The electrochemical cell of claim 17 comprising a single first electrode and a single second electrode.

24. The electrochemical cell of claim 1 comprising a single first electrode and a single second electrode.

25. An electrochemical cell, comprising:

a cylindrical container housing a first electrode, a second electrode, an alkaline electrolyte, and a separator; said first electrode defines a tubular cavity therein and comprises manganese dioxide as an electrochemically active material, said first electrode's electrochemical capacity determined by multiplying the grams of manganese dioxide by 285 mAhr/g; said second electrode, disposed within said cavity, comprises zinc as an electrochemically active material, said second electrode's electrochemical capacity determined by multiplying the grams of zinc by 821 mAhr/g; said separator disposed at the interface between the first and second electrodes, wherein said cell is an LR6 size cell, the area of the interface is between 12.6 cm 2 and 13.2 cm 2 and the ratio of the second electrode's electrochemical capacity to the first electrode's electrochemical capacity is between 1.33:1 and 1.40:1, wherein said zinc consists of particulate zinc, wherein said particulate zinc has a tap density greater than 2.80 g/cc and less than 3.65 g/cc, said second electrode has a known volume, and said particulate zinc occupies less than 28.0 volume percent of said second electrode's volume.

26. An electrochemical cell, comprising:

a container housing a first electrode, said electrode defining a cavity therein, said cavity created by utilizing a cylindrical tool to impact mold said first electrode comprising manganese dioxide into a tubular configuration, said tool having a circumference of at least 29.12 mm, said container having an outer diameter between 13.89 mm and 14.00 mm;

a separator lining said cavity and contacting said first electrode;

a second electrode comprising zinc powder and disposed within said separator lined cavity, said zinc powder having a tap density greater than 2.80 g/cc and less than 3.65 g/cc, a BET surface area greater than 400 cm 2 /g, a KOH absorption value of at least 14%, and a D 50 less than 130 microns; and

a quantity of alkaline electrolyte disposed within said container and in contact with said electrodes and said separator; wherein

said cell is an LR6 size cell, said first electrode's electrochemical capacity is determined by multiplying the grams of manganese dioxide by 285 mAhr/g, said second electrode's electrochemical capacity is determined by multiplying the grams of zinc by 821 mAhr/g, the ratio of the second electrode's electrochemical capacity to the first electrochemical capacity is between 1.33:1 and 1.40:1, and the area of interface between the first and second electrodes is between 12.6 cm 2 and 13.2 cm 2 .

27. The electrochemical cell of claim 26 wherein said circumference is at least 29.53 mm.

28. The electrochemical cell of claim 26 wherein said circumference is at least 29.92 mm.

29. The electrochemical cell of claim 26 comprising a single first electrode and a single second electrode.

Assignments (8)
AMENDED AND RESTATED INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Mar 19, 2025
From: ENERGIZER BRANDS, LLC; ENERGIZER AUTO, INC.,; ENERGIZER AUTO SALES, INC.
To: JPMORGAN CHASE BANK, N.A., AS COLLATERAL AGENT
Reel/Frame 070565/0282 →
PATENT SECURITY AGREEMENT Recorded Dec 30, 2020
From: ENERGIZER BRANDS, LLC; ENERGIZER AUTO, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 054875/0651 →
PATENT SECURITY AGREEMENT Recorded Jan 8, 2019
From: ENERGIZER HOLDINGS, INC.; AMERICAN COVERS, LLC; ASSOCIATED PRODUCTS, LLC; CALIFORNIA SCENTS, LLC; ENERGIZER BRANDS, LLC; ENERGIZER MANUFACTURING, INC.
To: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
Reel/Frame 048029/0246 →
TERMINATION AND RELEASE OF SECURITY INTEREST IN PATENT RIGHTS Recorded Jan 8, 2019
From: JPMORGAN CHASE BANK, N.A., AS ADMINISTRATIVE AGENT
To: ENERGIZER BRANDS, LLC
Reel/Frame 048888/0300 →
CORRECTIVE ASSIGNMENT TO CORRECT THE APPLICATION NUMBER 29/499,135 PREVIOUSLY RECORDED AT REEL: 036019 FRAME: 814. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 16, 2016
From: EVEREADY BATTERY COMPANY
To: ENERGIZER BRANDS, LLC
Reel/Frame 040054/0660 →
SECURITY AGREEMENT Recorded Jul 15, 2015
From: ENERGIZER BRANDS, LLC
To: JPMORGAN CHASE BANK, N.A., AS AGENT
Reel/Frame 036106/0392 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 26, 2015
From: EVEREADY BATTERY COMPANY, INC.
To: ENERGIZER BRANDS, LLC
Reel/Frame 036019/0814 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 30, 2004
From: JOHNSON, ROBERT P.
To: EVEREADY BATTERY COMPANY, INC.
Reel/Frame 015860/0878 →