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Sku SC93-2856_25_G
US-Strem
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Product Information

Product Name
Nickel(II) sulfate hexahydrate (99.99%-Ni) PURATREM
Brand Name
US-Strem
Product Number
93-2856
CAS
10101-97-0
Certificate of Analysis (COA)​
COA not found

General Information

PubChem CID
5284429
IUPAC Name
nickel(2+);sulfate;hexahydrate
InChI Key
RRIWRJBSCGCBID-UHFFFAOYSA-L
SMILES
O.O.O.O.O.O.O-S(=O)(=O)O-.Ni+2

Description

Product Introduction

Nickel(II) Sulfate Hexahydrate (CAS No. 10101-97-0) is an important nickel-containing inorganic compound widely used as a nickel precursor in advanced materials, electrochemical energy storage, catalysis, electroplating, and chemical synthesis.

As a highly soluble source of Ni²⁺ ions, Nickel(II) sulfate hexahydrate plays a key role in the preparation of nickel-based functional materials, especially nickel-rich cathode materials for lithium-ion batteries, including NCM (LiNiₓCoᵧMn_zO₂) and NCA (LiNiCoAlO₂) systems.

With the growing demand for high-energy-density batteries, nickel sulfate has become an essential precursor material for developing next-generation battery technologies due to its ability to provide controlled nickel content for cathode composition optimization.

 

Structural Characteristics

Nickel(II) sulfate hexahydrate contains:

Nickel Ion (Ni²⁺)

  • Provides a reliable nickel source for material synthesis
  • Enables preparation of nickel-containing oxides, hydroxides, and composites
  • Plays an important role in battery cathode chemistry

Sulfate Anion (SO₄²⁻)

  • Provides high water solubility
  • Facilitates aqueous synthesis processes
  • Suitable for industrial and laboratory preparation methods

Hydrated Crystal Structure

  • Provides stable solid-state storage form
  • Commonly used as a precursor in inorganic material synthesis

 

Key Research Applications

1. Lithium-Ion Battery Cathode Material Precursor

Nickel(II) sulfate hexahydrate is widely used as a nickel precursor for lithium-ion battery cathode materials.

Applications include:

  • Nickel-rich NCM cathode materials
  • NCA cathode material synthesis
  • High-energy-density lithium-ion batteries
  • Cathode precursor preparation
  • Battery material optimization studies

Nickel content helps increase the reversible capacity and energy density of layered oxide cathode materials.

 

2. Nickel-Rich Layered Oxide Materials

Nickel sulfate hexahydrate is an important raw material for preparing advanced nickel-based cathode precursors.

Applications include:

  • Ni(OH)₂ precursor synthesis
  • Ni-rich hydroxide intermediates
  • Layered transition metal oxide preparation
  • Particle morphology control research

 

3. Electrochemical Energy Storage Research

Nickel(II) sulfate hexahydrate is used in the development of nickel-based electrochemical materials.

Applications include:

  • Nickel hydroxide electrodes
  • Nickel oxide materials
  • Battery electrode research
  • Supercapacitor electrode materials
  • Electrochemical performance evaluation

 

4. Nickel Compound Synthesis

As a soluble nickel source, it is widely used for preparing various nickel-containing compounds.

Applications include:

  • Nickel oxide (NiO) synthesis
  • Nickel hydroxide preparation
  • Nickel nanoparticles
  • Nickel-based catalysts

 

5. Electroplating and Surface Treatment

Nickel sulfate hexahydrate is commonly used as a nickel ion source in plating processes.

Applications include:

  • Nickel electroplating solutions
  • Corrosion-resistant coatings
  • Metal surface modification
  • Functional coating research

 

6. Catalysis and Chemical Research

Nickel(II) sulfate hexahydrate is used as a precursor for nickel catalysts and coordination compounds.

Applications include:

  • Hydrogenation catalyst preparation
  • Nickel-based catalytic materials
  • Coordination chemistry studies
  • Organic synthesis research

 

Advantages

  • High-purity nickel source for material synthesis
  • Excellent solubility in aqueous systems
  • Important precursor for lithium battery cathode materials
  • Suitable for NCM/NCA battery research
  • Widely used in electrochemical material development
  • Compatible with industrial-scale preparation processes

 

Storage & Handling

  • Store in a tightly sealed container.
  • Keep in a dry and cool environment.
  • Avoid unnecessary exposure to moisture.
  • Handle according to appropriate chemical safety procedures.

Nickel compounds should be handled with suitable laboratory protection measures.

 

Research Areas

  • Lithium-ion battery materials
  • Nickel-rich cathode materials
  • NCM/NCA precursor synthesis
  • Electrochemical energy storage
  • Nickel-based catalysts
  • Metal oxide materials
  • Electroplating technology

FAQ

What is Nickel(II) sulfate hexahydrate?

Nickel(II) sulfate hexahydrate is a hydrated nickel salt that provides Ni²⁺ ions and is widely used as a precursor for battery materials, nickel compounds, and electrochemical research.

 

What is Nickel(II) sulfate hexahydrate used for?

It is mainly used for:

  • Lithium-ion battery cathode materials
  • Nickel-rich NCM/NCA precursor preparation
  • Nickel hydroxide and nickel oxide synthesis
  • Electroplating applications
  • Nickel catalyst preparation

 

Why is nickel sulfate important for lithium-ion batteries?

Nickel is a key element in high-capacity cathode materials. Increasing nickel content can improve the energy density of layered oxide cathodes.

 

Is Nickel(II) sulfate hexahydrate a battery electrolyte material?

No. Nickel(II) sulfate hexahydrate is a battery material precursor, mainly used for preparing cathode materials. It is not an electrolyte salt.

 

What battery materials can be prepared from nickel sulfate?

Nickel sulfate can be used to prepare:

  • NCM cathode materials
  • NCA cathode materials
  • Nickel hydroxide precursors
  • Nickel oxide materials

 

What is the role of nickel in NCM cathode materials?

Nickel contributes to high reversible capacity and energy density in layered oxide cathodes.

References Data Source From Pubchem

Vanillin–L-glutamic acid condensation product: A green brightener for electrodeposition of Zn–Ni alloy coating on mild steel

Publication Name: Bulletin of Materials Science
Publication Date: 2026-03-04
DOI: 10.1007/s12034-026-03559-x

Photocatalytic H2 generation influenced by cations: a comparative study of MFe2O4 (M = Mn, Ni and Cu)

Publication Name: Research on Chemical Intermediates
Publication Date: 2026-03-01
DOI: 10.1007/s11164-025-05902-z

Development of nitrogen and fluorine-doped carbon dots (N, F-CDs) as fluorescent sensor for detection of Fe3+ ions in the water environment

Publication Name: Chemical Papers
Publication Date: 2026-02-27
DOI: 10.1007/s11696-026-04731-7

Distribution discipline of impurities Mg2+ and Al3+ in the solid phase during the preparation of NCM811 precursor

Publication Name: Ionics
Publication Date: 2026-02-25
DOI: 10.1007/s11581-026-06981-7

NiCoP–graphene hybrid supported on 3D nickel foam: a synergistic electrode architecture for enhanced alkaline hydrogen evolution

Publication Name: Reaction Kinetics, Mechanisms and Catalysis
Publication Date: 2026-02-24
DOI: 10.1007/s11144-026-03053-9