Nickel phosphate (Ni3(PO4)2)
-
Nickel phosphate (Ni3(PO4)2)
structure -
-
CAS No:
10381-36-9
-
Formula:
H3O4P.3/2Ni
-
Chemical Name:
Nickel phosphate (Ni3(PO4)2)
-
Synonyms:
Phosphoric acid,nickel(2+) salt (2:3);Nickel phosphate (Ni3(PO4)2);Nickelous phosphate;Nickel(II) phosphate;Nickel phosphate (Ni3P2O8);Trinickel diphosphate;Nickel(2+) phosphate;Nickel phosphate;Trinickel bis(orthophosphate);VSB 5
- Categories:
-
CAS No:
Description
Nickel phosphate (chemical formula Ni3(PO4)2) is a special compound that is liquid at room temperature and has unique chemical properties. In order to precisely describe its properties for search and use in the field of chemistry, it was assigned a specific CAS number: 10381-36-9. This number is like a chemical substance's ID number, which precisely defines its chemical properties. From the chemical formula, nickel phosphate can also be expressed as H3O4P·3/2Ni, which shows the exact proportion and bonding of nickel, phosphorus, oxygen, and hydrogen elements in the molecular structure. In different disciplines and application fields, nickel phosphate has many different names and nicknames. For example, it is called phosphate, nickel salt (ratio of 2:3), nickel phosphate (Ni3(PO4)2), nickel phosphate oxide, nickel phosphate (Ni3P2O8), tri-nickel diphosphate, nickel salt (II) phosphate, etc. Although there are many names, they actually refer to the same chemical substance. Nickel phosphate belongs to the category of inorganic salts in inorganic chemistry, which is its most basic chemical property. In practical applications, nickel phosphate has a very special use, namely, it can generate "nickel yellow" pigment during the ignition process. This pigment is widely used in the production of paint, watercolor and other art materials due to its unique color and properties. Nickel phosphate, in addition to being used as a raw material for pigments, is also commonly used as an electroplating agent and surface treatment agent. During electroplating, it helps form a uniform protective layer on the metal surface, improving the metal's corrosion resistance and appearance. In surface treatment, nickel phosphate also plays an important role, it can be used to improve the physical and chemical properties of materials, enhance their service life and performance. As a chemical substance, the important role of nickel phosphate in the chemical field is self-evident, and it also plays a wide range of roles in industrial production and artistic creation.
Characteristics
173
0.77200
decomposes on heating [KIR81]
158ºCat 760 mmHg
insoluble H2O; soluble acids, ammonia
1.41mmHg at 25°C
Safety Information
P201, P202, P260, P261, P264, P270, P272, P273, P280, P281, P285, P302+P352, P304+P341, P308+P313, P314, P321, P333+P313, P342+P311, P363, P391, P405, P501
H317
|Danger|H317 (100%): May cause an allergic skin reaction [Warning Sensitization, Skin]|P201, P202, P260, P261, P264, P270, P272, P273, P280, P281, P285, P302+P352, P304+P341, P308+P313, P314, P321, P333+P313, P342+P311, P363, P391, P405, and P501|Aggregated GHS information provided by 73 companies from 7 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.
Nickel phosphate (Ni3(PO4)2) Use and Manufacturing
Nickel phosphates are not only renowned for being excellent raw materials for pigments, but also for their unique value in electroplating and surface treatment. In electroplating processes, they can help build a uniform and durable protective film on the metal surface, which not only significantly enhances the metal's corrosion resistance, but also greatly improves its appearance. In surface treatment, nickel phosphates are equally indispensable, as they can optimize the physical and chemical properties of materials, significantly extending their service life and overall performance. As a chemical substance, nickel phosphates play a crucial role in the field of chemistry, and also demonstrate extensive practical value in industrial production and artistic creation. Its widespread applications in various fields undoubtedly highlight its unique physical and chemical properties. In the field of battery manufacturing, nickel phosphates have become the preferred electrode material due to their high energy density, long cycle life, and outstanding electrochemical performance. By carefully regulating the synthesis conditions, we can obtain nickel phosphate materials with specific morphologies and structures, thereby further enhancing the battery's performance and stability. Moreover, nickel phosphates play an important role in ceramic manufacturing. As a key raw material for ceramic manufacturing, it can help prepare various high-performance ceramic products with excellent properties such as high temperature resistance, wear resistance, and corrosion resistance. By cleverly combining with other ceramic raw materials, we can also obtain composite materials with outstanding performance to meet various special needs. In the field of environmental protection, nickel phosphate also shows outstanding performance. As an efficient adsorbent, it can effectively treat heavy metal ions and organic pollutants in wastewater. Nickel phosphate, with its large specific surface area and rich active sites, can efficiently adsorb harmful substances in wastewater and convert them into harmless substances, thus achieving the purpose of water purification. Not only that, nickel phosphate also has extensive applications in catalysts, pigments, and corrosion-resistant coatings. Its unique properties make it a versatile compound that provides strong support for the development of various fields. However, the application of nickel phosphate also faces some challenges and limitations, such as high production costs and stringent synthesis conditions. Therefore, future research needs to explore more deeply the synthesis methods, property regulation, and application expansion of nickel phosphate to further promote its application and development in various fields.
1,000,000 - 10,000,000 lb
All other basic inorganic chemical manufacturing|Phosphoric acid, nickel(2+) salt (2:3): ACTIVE
Computed Properties
Molecular Weight:366.02
Hydrogen Bond Acceptor Count:8
Exact Mass:365.708309
Monoisotopic Mass:363.71287
Topological Polar Surface Area:173
Heavy Atom Count:13
Complexity:36.8
Covalently-Bonded Unit Count:5
Compound Is Canonicalized:Yes
Recommended Suppliers of Nickel phosphate (Ni3(PO4)2)
-
CN
8 YRS
Business licensed Certified factoryManufactory Supplier of Biochemicals Ingredients,Vitamin Amino Acid Ingredients,Cosmestic Ingredients,Pharma Chemicals,Organic Fine Chemicals,Food Nutrient Ingredients,Natural Plant Ingredients,APIS Intermidiates,Daily Chemicals,Agricultural Chemicals,Surfactant Chemicals,Ultraviolet Absorbents,Antioxidant Ingredients,Scientific Research Chemical,Flavors and Fragrances ChemicalsInquiryCAS No.: 10381-36-9Grade: Pharmaceutical GradeContent: 99%
Learn More Other Chemicals
-
Decyl 3,5,5-trimethylhexyl hydrogen phosphate
85006-33-3
-
Benzenamine, phosphate (2:1)
17843-02-6
-
Praseodymium phosphate (PrPO4)
14298-31-8
-
Polyethylene glycol octyl ether acid phosphate Formula
31800-88-1
-
Benzeneethanamine, α-methyl-, phosphate (1:1) Formula
139-10-6
-
[[(2R,3S,4S,5R)-3,4-dihydroxy-5-(5-methyl-2,4-dioxopyrimidin-1-yl)oxolan-2-yl]methoxy-hydroxyphosphoryl] phosphono hydrogen phosphate Formula
66097-68-5
-
Ethanol, 2-[2(or 4)-isododecylphenoxy]-, dihydrogen phosphate Structure
100296-67-1
-
Ethanol, 2-[2(or 4)-isononylphenoxy]-, dihydrogen phosphate Structure
100258-39-7
-
What is Ethanethiol, 2-[(6-aminohexyl)amino]-, dihydrogen phosphate (ester)
36416-85-0
-
What is 2-ethylhexyl bis(2-methyl-2-nitropropyl) phosphate
64050-61-9