Ethyl Ziram CAS 14324-55-1


Manufacturer Ethyl Ziram CAS 14324-55-1
- Appearance:Liquid
- Purity:99.8%
- Delivery:30days
- Sample Available:Available
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Name: Ethyl Ziram
CAS: 14324-55-1
MOQ: 1KG
Directory Guidance on Ethyl Ziram
Chemical Structure
Basic Info:
Melting Point | 178-181 °C (lit.) |
Boiling Point | 330.6°C (estimate) |
Density | 1,48 g/cm3 |
Vapor Pressure | 0.007Pa at 25℃ |
Ethyl Ziram Introduction:
Ethyl Ziram (also known as Zinc Diethyldithiocarbamate) is a sulfur-containing organometallic compound with a molecular formula of C10H20N2S4Zn. The compound usually exists in the form of white to light yellow powder with low toxicity and good thermal stability.
From the chemical structure point of view, the sulfur atom in its molecule forms a stable coordination bond with the zinc ion. This unique structure gives it excellent antioxidant properties and catalytic activity. In the industrial field, it is mainly prepared by the condensation reaction of diethylamine, carbon disulfide and zinc salt. The reaction conditions must strictly control the pH value and temperature to ensure the purity of the product. Due to the maturity of the synthesis process, the industrial production of Ethyl Ziram has high efficiency and consistency.
In terms of physical and chemical properties, the melting point of Ethyl Ziram is about 175°C, and its solubility in different solvents varies significantly. For example, it is easily soluble in organic solvents such as chloroform and dichloromethane, but its solubility in water is extremely low. This feature gives it a significant advantage in specific application scenarios.
In addition, it has strong chemical stability and is not easy to react with oxygen or moisture in the air at room temperature, but it may decompose at high temperature or in a strong acid or alkali environment to release sulfur-containing gas. This controllable decomposition property provides a theoretical basis for its application in high-temperature processing.
From a functional perspective, the core role of Ethyl Ziram comes from the thiocarbamate group in its molecule. This group can form an adsorption layer with the metal surface through the lone pair of electrons of the sulfur atom, thereby playing a corrosion inhibition or lubrication role; at the same time, in the polymer system, it can be used as a free radical scavenger to effectively delay the aging process of the material.
These characteristics make it occupy an important position in the rubber industry, lubricant additives and polymer material stabilizers. It is worth noting that its biological toxicity is low and it has no obvious damage to mammalian cells at the recommended concentration, which lays the foundation for its potential application in medical and food-related fields.
Nature and Specifications:
Item | Specification |
Product Name | Ethyl Ziram |
CAS No. | 14324-55-1 |
Appearance | Powder |
Shelf Life | 2 years |
Packing | As Your Requirements |
Form | solid |
Color | White |
Specific Gravity | 1.48 |
Product service:
- Certificate Of Analysis (COA)
- Material Safety Data Sheet (MSDS)
- Route of synthesis (ROS)
- Method of Aanlysis (MOA)
- Nuclear Magnetic Resonance (NMR)
- Packing pictures and loading video before loading
- Free Sample
- Factory audit
The Application Situation Of Ethyl Ziram
Ethyl Ziram is widely utilized within the rubber industry as an ultra-fast vulcanization accelerator. Due to its unique molecular structure, Ethyl Ziram can significantly decrease activation energy of vulcanization reactions and thus shorten production times by 30%-50%.
Comparable with traditional accelerators, this new solution maintains high activity even at higher temperatures without scorching. This property makes it irreplaceable in the production of products requiring rapid prototyping such as tires and seals, while acting synergistically with zinc oxide activators to further increase mechanical properties and heat resistance of vulcanized rubber products.
Ethyl Ziram’s many uses extend beyond lubricant additives. Under extreme pressure conditions, its sulfur element reacts chemically with metal surfaces to form a high-hardness iron sulfide film on them and reduce wear of friction pairs significantly.
Research data shows that adding 0.5%-1.5% of Ethyl Ziram can increase the anti-wear performance of lubricants by 2-3 times. At the same time, its antioxidant function can extend the service life of lubricants and reduce the frequency of equipment maintenance. In the field of high-end lubrication such as aviation hydraulic oil and gear oil, it has become an important part of the standard additive formula.
In the field of agriculture, Ethyl Ziram exhibits unique bactericidal and plant growth regulating functions. As an agricultural fungicide, its mechanism of action is to block energy metabolism by inhibiting the sulfhydryl enzyme activity of pathogens. Field tests have shown that its control effect on common diseases such as anthrax and powdery mildew can reach more than 75%.
More importantly, low-concentration solutions of this product can stimulate crop root development and improve nutrient absorption efficiency. This dual action mode provides new ideas for the development of green agriculture. At present, relevant research is focusing on the development of sustained-release Ethyl Ziram preparations to reduce environmental residues.
The application exploration of Ethyl Ziram in the pharmaceutical industry is mainly concentrated in two aspects: one is as an active ingredient of local antifungal drugs, using its specific binding ability with fungal cell membrane sterols; the other is as a stabilizer in the preparation of radioactive drugs.
In in vitro experiments, its minimum inhibitory concentration for Candida albicans is only 5μg/mL, showing good development prospects. Although no Ethyl Ziram-type drugs have been launched on the market, its low cytotoxicity and high biological activity have attracted the attention of pharmaceutical companies.
The latest research in the field of environmental protection has revealed the potential of Ethyl Ziram in the treatment of heavy metal pollution. The thiocarbamate group in its molecule has a strong coordination ability for heavy metal ions such as lead and cadmium, and can convert soluble heavy metals into stable precipitates.
Laboratory data show that 1g of Ethyl Ziram can treat 3.5L of wastewater with a lead concentration of 100mg/L, with a removal rate of more than 99%. This efficient heavy metal capture ability makes it show its application value in the fields of industrial wastewater treatment and soil remediation, and related technologies have entered the pilot stage.
The Advantages Of Ethyl Ziram
From the perspective of chemical stability, Ethyl Ziram can maintain the stability of its active ingredients for more than three years under normal storage conditions. The zinc ions in its molecular structure form a rigid chelate ring with the organic ligands, which effectively blocks the erosion of the active groups by the external environment. This feature not only reduces storage costs, but also ensures the quality consistency of the product during long-distance transportation. Compared with similar sulfur-containing compounds, its decomposition temperature is increased by about 40°C, which enables it to adapt to more demanding processing conditions without premature failure.
The multifunctional integrated characteristics give Ethyl Ziram a unique position in the market competition. A single molecule has multiple functions such as vulcanization promotion, anti-oxidation and corrosion protection, and metal passivation. This multi-effect feature reduces the types and amounts of additives in the formula. In complex formula systems, it can also produce synergistic effects with other additives. For example, when used in combination with hindered amine light stabilizers, its anti-aging effect is improved by more than 40%. This compatibility advantage gives it greater design flexibility in the development of new materials.
From the perspective of technological development, the molecular modifiability of Ethyl Ziram provides broad space for product upgrades. By introducing different substituents or preparing nanocomposites, key parameters such as thermal stability and solubility can be directional controlled. The Ethyl Ziram/montmorillonite nanocomposite developed by a research team has a thermal decomposition temperature of 210°C and a 3-fold increase in anti-migration performance. This customizable feature enables it to meet the personalized needs of different industries and maintain the competitiveness of products in the market segments.
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Chemicalbook-Ethyl Ziram
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