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Home > Encyclopedia > Zinc oxalate (ZnC2O4)

Zinc oxalate (ZnC2O4)

Zinc oxalate (ZnC2O4) structure

Zinc oxalate (ZnC2O4) 

structure
  • CAS No:

    547-68-2

  • Formula:

    C2O4Zn

  • Chemical Name:

    Zinc oxalate (ZnC2O4)

  • Synonyms:

    Zinc,[ethanedioato(2-)-κO1,κO2]-;Oxalic acid,zinc salt (1:1);Zinc oxalate (ZnC2O4);[Ethanedioato(2-)-κO1,κO2]zinc;Zinc oxalate;Zinc oxalate (1:1);Tegokat 634;112901-80-1;116295-84-2;1430716-13-4

  • Categories:

    Organic Chemistry  >  Carboxylic Acids and Derivatives

Description

White powder. Soluble in acids and alkalies; slightly soluble in water. (decomposes), combustible.

Zinc oxalate (ZnC2O4) Basic Attributes

153.41

153.92400

208-934-2

DTXSID1074917

2917119000

Characteristics

74.60000

2.562 [HAW93]

decomposes at 100℃ [HAW93]

365.1ºC at 760mmHg

188.8ºC

g/L solution H2O: 0.018 (0°C), 0.0256 (25°C) [KRU93]; soluble dilute mineral acids, ammonia solutions [MER06]

Safety Information

III

6.1(b)

2811

1

21/22

24/25

Xn

P280

H302 + H312

|Warning|H302 (100%): Harmful if swallowed [Warning Acute toxicity, oral]|P264, P270, P280, P301+P312, P302+P352, P312, P322, P330, P363, and P501|Aggregated GHS information provided by 43 companies from 2 notifications to the ECHA C&L Inventory. Each notification may be associated with multiple companies.|Not Classified

Zinc oxalate (ZnC2O4) Use and Manufacturing

Uses

When zinc oxalate decomposes, it releases large amounts of carbon dioxide gas, while leaving zinc oxide as the final solid product. This reaction process is violent and can even reach the degree of flammability, so in laboratory operations or industrial production, safety procedures must be strictly followed to ensure that zinc oxalate is handled and stored under proper conditions to prevent accidents. These characteristics of zinc oxalate make it have important application value in many fields. For example, in chemical analysis, it is used as a reagent for the quantitative determination of zinc ions; In the ceramic industry, the formation of zinc oxide helps to improve the strength and luster of ceramic products; In addition, it also plays an integral role in battery manufacturing, paint coatings and agricultural fertilizers. Zinc oxalate has become a bright pearl in the field of inorganic chemistry because of its unique chemical structure and diverse application prospects. Although zinc oxalate requires special handling and storage due to its thermal sensitivity, this does not diminish its importance in numerous industrial applications. As a multifunctional inorganic compound, zinc oxalate plays an indispensable role in the chemical industry, especially in the production of zinc oxide process, its value is particularly significant. Zinc oxide, a substance widely used in the chemical, pharmaceutical and personal care industries, has an amazing range of applications. As a pigment, it gives rich color to coatings and plastics; In sunscreen, it can effectively absorb UV rays and protect the skin from damage; At the same time, it is also a common additive in the manufacture of rubber and plastics, enhancing the performance and durability of products. However, the use of zinc oxalate is much more than that. In the field of organic synthesis, it has shown high application value. Due to its ability to react with various organic functional groups, such as carboxylate and alcohols, zinc oxalate is an important intermediate for the synthesis of complex organic compounds. This property allows scientists to use it in the development of novel drugs and agricultural compounds to build specific molecular structures to meet specific therapeutic or protective needs. In recent years, research on the catalytic potential of zinc oxalate has become increasingly active. The presence of zinc metal centers and the acidity of oxalate ligands give it unique catalytic properties, making it a focus for chemists to develop novel catalytic systems for various chemical transformations. For example, this unique catalytic activity could potentially be used in more efficient and environmentally friendly chemical production processes to reduce by-product generation and energy consumption. Although the thermal instability of zinc oxalate requires extra precautions when used and stored, its extensive chemical properties and versatility have allowed it to maintain its enduring importance in the chemical industry and beyond. With the deepening of scientific research, we have reason to believe that the potential application of zinc oxalate will be further explored and utilized, bringing more convenience and innovation to our lives.

Zinc, [ethanedioato(2-)-.kappa.O1,.kappa.O2]-: ACTIVE|PMN - indicates a commenced PMN (Pre-Manufacture Notices) substance.

Computed Properties

Molecular Weight:153.4
Hydrogen Bond Acceptor Count:4
Exact Mass:151.908800
Monoisotopic Mass:151.908800
Topological Polar Surface Area:80.3
Heavy Atom Count:7
Complexity:60.5
Covalently-Bonded Unit Count:2
Compound Is Canonicalized:Yes

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