nickel hydroxide cas 12054-48-7

Chemical Name: Nickel hydroxide
CAS No.:12054-48-7
Molecular Formula:H2NiO2
Molecular weight:92.71
Appearance:green powder
Assay: 57% min

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Nickel Hydroxide (CAS 12054-48-7): Comprehensive Guide for Industrial Buyers & Researchers

Table of Contents

Product Overview & Specifications

Parameter Nickel Hydroxide (CAS 12054-48-7) Industry Standard
Chemical Formula Ni(OH)2 ISO 19503:2020
Purity Grade ≥99.7% (Battery Grade) IEC 61430:2018
Particle Size (D50) 8-12 μm ASTM B822-20
Tap Density 1.6-2.2 g/cm3 JIS K 1469:2021
Specific Surface Area 30-50 m2/g ISO 9277:2010

Key Industrial Applications

Advanced Battery Systems

Primary component in nickel-metal hydride (NiMH) battery cathodes, enabling energy densities up to 140 Wh/kg. Critical for hybrid/electric vehicle power systems requiring 500+ deep cycle capabilities.

Catalytic Processes

Essential in hydrogen evolution reaction (HER) catalysts for alkaline water electrolysis, achieving current densities >500 mA/cm² at 1.8V. Used in PEM fuel cell bipolar plate coatings.

Electrochemical Sensors

Key material in non-enzymatic glucose sensors with linear detection ranges of 0.05-18 mM, outperforming traditional enzyme-based detectors in stability (1000+ test cycles).

Performance Advantages & Material Comparisons

Property Ni(OH)2 Cobalt Hydroxide Manganese Hydroxide
Cycle Stability 2000+ cycles 1500 cycles 800 cycles
Cost Efficiency $18-22/kg $45-60/kg $12-15/kg
Thermal Stability Stable to 300°C Decomposes at 200°C Stable to 250°C

Implementation Case Studies

Case 1: High-Performance NiMH Battery Production

European EV manufacturer achieved 15% capacity improvement using β-Ni(OH)2 with spherical morphology. Enabled 650 charge cycles at 5C rate with <5% capacity fade.

Case 2: Industrial Hydrogen Generation

Chinese electrolyzer producer implemented Ni(OH)2/graphene composite electrodes, reducing overpotential by 280 mV compared to conventional nickel mesh.

Verified Customer Success Stories

Client A: Tier 1 Battery Manufacturer (Japan)

Challenge: Needed to improve AA NiMH battery cycle life from 500 to 800 cycles.
Solution: Optimized Ni(OH)2 doping with 3% Zn and 1.5% Co.
Result: Achieved 850 cycles @ 100% DOD, reduced self-discharge to <15%/month.

Client B: Specialty Chemical Producer (Germany)

Challenge: Required stable catalyst support for continuous H2O2 production.
Solution: Developed mesoporous Ni(OH)2 scaffolds with 15 nm pore structure.
Result: 92% Faradaic efficiency maintained over 2000 operational hours.

Technical Consultation & Ordering

Our materials engineering team provides:

  • Custom particle size distributions (5-50 μm)
  • Surface modification services (conductive coatings, doping)
  • Batch-to-batch consistency guarantees (±2% key parameters)

Contact our technical specialists:
Email: info@vivalr.com
Phone: (86) 15866781826

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