# item.guide
Side-by-Side Comparison Battery Chemistries

Alkaline (Zn-MnO2) vs. Nickel-Cadmium (NiCd)

Comparing 2 standards across 9 specifications. 9 key differences identified.

Comparing:
Alkaline (Zn-MnO2)
Nickel-Cadmium (NiCd)

Alkaline (Zinc-Manganese Dioxide) is the worldwide standard primary (non-rechargeable) chemistry for consumer electronic cells (AA, AAA, C, D, 9V). Operating at 1.5V nominal, alkaline batteries utilize a potassium hydroxide (KOH) alkaline electrolyte, offering 100–140 Wh/kg energy density, a 5-to-10 year shelf life, and low environmental toxicity.

View full Alkaline (Zn-MnO2) spec sheet →

Nickel-Cadmium (NiCd) is a mature, exceptionally rugged alkaline secondary chemistry operating at 1.2V nominal. Renowned for sustaining massive pulse discharge currents, operating reliably in deep sub-zero temperatures (-40°C), and enduring harsh electrical abuse, NiCd remains in service for aircraft backup power, emergency lighting, and legacy industrial systems.

View full Nickel-Cadmium (NiCd) spec sheet →

Specification Comparison Table

9 Parameters
Parameter / Spec
Nominal Cell Voltage
1.50 V 1.20 V
Gravimetric Energy Density
100 – 140 Wh/kg 45 – 65 Wh/kg
Volumetric Energy Density
250 – 350 Wh/L 120 – 160 Wh/L
Cycle Life (to 80% Capacity)
Single Use (Primary Non-Rechargeable) 1,000 – 2,000 Cycles
Thermal Runaway Threshold
> 200 °C > 260 °C
Operating Temperature Range
-18 to +55 °C -40 to +60 °C
Self-Discharge Rate
< 0.2% / Month (< 2% / Year) 15 – 20% / Month
Primary Anode Material
Zinc Powder (Zn) in Gel suspension Metallic Cadmium (Cd)
Primary Cathode Material
Manganese Dioxide (MnO2) with Graphite conductive matrix Nickel Oxyhydroxide (NiOOH)