Cas no 39430-27-8 (Nickel(II) carbonate hydroxide hydrate)

Nickel(II) carbonate hydroxide hydrate is a mixed basic carbonate compound of nickel, typically appearing as a green crystalline solid. It is commonly used as a precursor in the synthesis of nickel-based catalysts, electrodes, and ceramic materials due to its controlled decomposition properties. The compound offers advantages such as high purity, consistent composition, and thermal stability, making it suitable for applications in electrochemistry and materials science. Its hydrate form ensures ease of handling and solubility in acidic media, facilitating further chemical processing. This compound is particularly valued in industrial and research settings for its reproducibility and role in producing functional nickel oxides or metallic nickel under controlled conditions.
Nickel(II) carbonate hydroxide hydrate structure
39430-27-8 structure
Product Name:Nickel(II) carbonate hydroxide hydrate
CAS No:39430-27-8
MF:CHNiO4
MW:135.70964217186
MDL:MFCD00150263
CID:305425
Update Time:2025-10-30

Nickel(II) carbonate hydroxide hydrate Chemical and Physical Properties

Names and Identifiers

    • Nickel(II) carbonate hydroxide hydrate
    • Nickel carbonate hydroxide tetrahydrate
    • NICKEL(II) CARBONATE BASIC TETRAHYDRATE
    • NICKEL(II) CARBONATE HYDROXIDE TETRAHYDRATE
    • NICKELOUS CARBONATE, BASIC, TETRAHYDRATE
    • (carbonato(2-))tetrahydroxytri-nicketetrahydrate
    • Basicnickelcarbonate
    • basicnickelcarbonatetetrahydrate
    • Nickel,(carbonato(2-))tetrahydroxytri-,tetrahydrate
    • MDL: MFCD00150263
    • Inchi: 1S/CH2O3.Ni.H2O/c2-1(3)4;;/h(H2,2,3,4);;1H2/p-3
    • InChI Key: JYWFZRGLNFLXLL-UHFFFAOYSA-K
    • SMILES: C([O-])([O-])=O.[Ni].[OH-]

Computed Properties

  • Exact Mass: 251.96300
  • Isotope Atom Count: 0
  • Hydrogen Bond Donor Count: 5
  • Hydrogen Bond Acceptor Count: 8
  • Heavy Atom Count: 10
  • Rotatable Bond Count: 0
  • Complexity: 18.8
  • Covalently-Bonded Unit Count: 7
  • Defined Atom Stereocenter Count: 0
  • Undefined Atom Stereocenter Count : 0
  • Defined Bond Stereocenter Count: 0
  • Undefined Bond Stereocenter Count: 0
  • Surface Charge: -1
  • XLogP3: Not determined
  • Topological Polar Surface Area: 68.2

Experimental Properties

  • Density: 2.600
  • PSA: 157.64000
  • LogP: -2.48180

Nickel(II) carbonate hydroxide hydrate Security Information

Nickel(II) carbonate hydroxide hydrate Customs Data

  • HS CODE:28369917

Nickel(II) carbonate hydroxide hydrate Pricemore >>

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Nickel(II) carbonate hydroxide hydrate Suppliers

Amadis Chemical Company Limited
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(CAS:39430-27-8)Nickel(II) carbonate hydroxide hydrate
Order Number:A1158507
Stock Status:in Stock
Quantity:2.5kg
Purity:99%
Pricing Information Last Updated:Thursday, 29 August 2024 23:46
Price ($):237.0

Additional information on Nickel(II) carbonate hydroxide hydrate

Nickel(II) Carbonate Hydroxide Hydrate: A Comprehensive Overview

Nickel(II) carbonate hydroxide hydrate, with the CAS number 39430-27-8, is a compound of significant interest in various scientific and industrial applications. This compound, often abbreviated as Nickel(II) carbonate hydroxide hydrate, is a hydrated form of nickel carbonate hydroxide, which has been extensively studied for its unique chemical properties and potential uses in advanced materials and energy storage systems.

The Nickel(II) carbonate hydroxide hydrate structure consists of nickel ions (Ni2?) coordinated with carbonate (CO?2?), hydroxide (OH?), and water molecules. Its chemical formula can be represented as NiCO?·Ni(OH)?·H?O, indicating the presence of both carbonate and hydroxide groups in a hydrated state. This compound is known for its layered crystal structure, which plays a crucial role in its electrochemical properties.

Recent studies have highlighted the importance of Nickel(II) carbonate hydroxide hydrate in the development of next-generation batteries, particularly in lithium-ion batteries (LIBs). Researchers have found that this compound can serve as a precursor for synthesizing nickel-rich cathode materials, such as LiNiO? and LiNi?/?Mn?/?Co?/?O? (NMC). The ability to control the crystal structure and particle size of Nickel(II) carbonate hydroxide hydrate during synthesis is critical for achieving high-performance cathode materials with enhanced energy density and cycling stability.

In addition to its role in battery applications, Nickel(II) carbonate hydroxide hydrate has also been explored for its potential in catalysis. The compound's surface properties and active sites make it a promising candidate for catalyzing various chemical reactions, including oxygen evolution reactions (OER) and carbon dioxide reduction. Recent advancements in nanotechnology have enabled the synthesis of nanostructured Nickel(II) carbonate hydroxide hydrate, which exhibits improved catalytic activity due to increased surface area and enhanced electronic conductivity.

The synthesis of Nickel(II) carbonate hydroxide hydrate typically involves precipitation methods, where nickel salts are reacted with carbonate or hydroxide precursors in aqueous solutions. Researchers have optimized these methods to achieve high purity and controlled morphologies, which are essential for specific applications. For instance, sol-gel techniques and hydrothermal synthesis have been employed to produce nanosheets or nanoparticles of Nickel(II) carbonate hydroxide hydrate, which exhibit superior electrochemical performance compared to bulk materials.

Another area of interest is the environmental application of Nickel(II) carbonate hydroxide hydrate. Studies have shown that this compound can be used as an adsorbent for removing heavy metals and organic pollutants from wastewater. Its high surface area and chemical stability make it an effective material for water treatment processes. Furthermore, recent research has focused on modifying the surface chemistry of Nickel(II) carbonate hydroxide hydrate to enhance its adsorption capacity and selectivity for specific contaminants.

Despite its numerous advantages, the practical implementation of Nickel(II) carbonate hydroxide hydrate faces challenges such as cost-effectiveness and scalability. Researchers are actively exploring cost-efficient synthesis routes and upscaling strategies to make this material more accessible for industrial applications. Additionally, efforts are being made to improve the stability and durability of Nickel(II) carbonate hydroxide hydrate under harsh operating conditions, particularly in battery and catalytic applications.

In conclusion, Nickel(II) carbonate hydroxide hydrate (CAS No. 39430-27-8) is a versatile compound with promising potential in energy storage, catalysis, and environmental remediation. Ongoing research continues to uncover new insights into its properties and applications, positioning it as a key material for future technological advancements. As scientists refine their understanding of this compound's behavior at the nanoscale, we can expect even more innovative uses for Nickel(II) carbonate hydroxide hydrate in the years to come.

Recommended suppliers
Amadis Chemical Company Limited
(CAS:39430-27-8)Nickel(II) carbonate hydroxide hydrate
A1158507
Purity:99%
Quantity:2.5kg
Price ($):237.0
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