2,4-Dichlorobenzenethiolate

Linshang Chemical

Specifications

HS Code

362635

Chemical Formula C6H3Cl2S-
Molar Mass 179.06 g/mol (approximate for the anion)
Appearance Typically appears as a salt, color and physical state can vary depending on the cation
Solubility Solubility can vary greatly depending on the cation; may be soluble in polar solvents
Pka No common pKa value for the thiolate as it is an anion; the conjugate acid (2,4 - dichlorobenzenethiol) has a pKa value which is acidic (approx. 7 - 9)
Melting Point Melting point depends on the salt formed; different cations will result in different melting points
Odor The conjugate acid has a characteristic sulfur - like odor
Reactivity Can react with electrophiles, forming new carbon - sulfur bonds
Toxicity Potential toxicity, with concerns for skin and eye irritation, and possible systemic effects depending on exposure

As an accredited 2,4-Dichlorobenzenethiolate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 100 - gram bottle of 2,4 - dichlorobenzenethiolate, securely packaged for safe transport.
Storage 2,4 - dichlorobenzenethiolate should be stored in a cool, dry, well - ventilated area. Keep it away from heat sources, flames, and oxidizing agents. Store it in a tightly closed container, preferably made of corrosion - resistant materials. Label the container clearly. This is to prevent decomposition, potential reactions, and ensure safety due to its chemical nature.
Shipping 2,4 - dichlorobenzenethiolate, being a chemical, is shipped in well - sealed, corrosion - resistant containers. Shipment follows strict hazardous material regulations, ensuring proper labeling, secure packaging to prevent leakage during transit.
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2,4-Dichlorobenzenethiolate 2,4-Dichlorobenzenethiolate
General Information
Where to Buy 2,4-Dichlorobenzenethiolate in China?
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Frequently Asked Questions

As a leading 2,4-Dichlorobenzenethiolate supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

What are the chemical properties of 2,4-dichlorothiophenol salt?
Dioxysilic acid compounds are the most common materials in the world, and their chemical properties are very special.
First of all, dioxysilic acid compounds have high chemical properties. This is because silicon and oxygen are formed on all sides into their basic properties, and the energy of silicon and oxygen is low, so that the material can remain stable in many environments, and it is easy to be biochemically reversed by other substances. For example, quartz is a typical dioxysilic acid compound. Under normal conditions, it can exist for a long time and does not last.
For the second time, its acidity is specific. Polyoxysilic acid compounds are neutral or weakly acidic, which is due to the surface properties caused by the four sides of silicon and oxygen. The characteristics of this acid have a deep impact on the process of transformation in nature. In weakly acidic environments, some dioxysilicic acid compounds may dissolve slowly, releasing the gold particles and other components they contain.
Furthermore, the solubility of dioxysilicic acid compounds is low. Except for the specialized environments such as acid and silicon, under normal circumstances, its solubility in water is very small. This characteristic also makes it often exist in the formation of sedimentary rocks and other processes.
In addition, the properties and forces of dioxysilicic acid compounds are different. In the crystal lattice of some dioxysilicic acid compounds, specific gold particles can be accommodated, replacing the positions of silicon or other elements to form different metals. This reactive property plays an important role in the formation of biomass, often leading to the enrichment of gold elements, forming a bed with a reactive value.
What are the common uses of 2,4-dichlorothiophenol salts?
Calcium magnesium dioxide is a rare mineral with a variety of common uses.
First, it is of great value in the construction field. This mineral has certain strength and stability and can be used to prepare special building materials. If it is used as a raw material and treated by a specific process, the building components made can enhance the seismic and compressive performance of buildings, making buildings more durable. In some places with strict construction quality requirements, such as important public buildings in earthquake-prone areas, or high-rise buildings, its application can significantly improve the safety and durability of buildings.
Second, in the ceramic production process, calcium magnesium dioxide can play a key role. Adding it in an appropriate amount into the ceramic body can improve the physical properties of ceramics. It can reduce the sintering temperature of ceramics, save energy, and improve the density and gloss of ceramics. The fired ceramic products have a more delicate texture, a smooth surface like a mirror, and a warm color, which not only enhances the practicality of ceramics, but also greatly enhances their artistic appreciation. It is common in the production of high-end ceramic tableware and art ceramics.
Third, in the chemical industry, calcium magnesium dioxide can act as a catalyst carrier. Its unique crystal structure and chemical properties can provide a good adhesion surface and stable environment for the catalyst, which helps to improve the activity and selectivity of the catalyst. In some organic synthesis reactions, catalysts supported by this mineral can make the reaction more efficient and accurate, improve the yield of the target product, reduce the occurrence of side reactions, and are of great significance to the optimization and upgrading of chemical production.
Fourth, in the field of environmental protection, calcium silica magnesium alum also shows potential uses. Because it has a certain adsorption capacity for certain pollutants, it can be developed into adsorption materials for treating wastewater and waste gas. For example, for heavy metal ions in wastewater or harmful gases in waste gas, it can separate these pollutants from the environment through physical or chemical adsorption, help environmental purification, and contribute to environmental protection.
What is the preparation method of 2,4-dichlorothiophenol salt?
There are many ways to make dioxygen. It is often made of limestone and dilute hydrochloric acid. The method is as follows:
Prepare a clean reaction vessel, such as a conical bottle, and plug it with a double-hole rubber plug. One hole is inserted into the long-necked funnel, so that the end of the funnel is under the liquid surface to prevent gas from escaping; the other hole is connected to the airway pipe to attract gas.
Take an appropriate amount of limestone, put it in the conical bottle, and slowly inject dilute hydrochloric acid from the long-necked funnel. For limestone, calcium carbonate also reacts with dilute hydrochloric acid to produce carbon dioxide, calcium chloride and water. Its chemical formula is: CaCO < + 2HCl = CaCl < 2 > + H < 3 > O + CO < 3 ^.
Carbon dioxide is heavier than air and can dissolve water, so it is collected by the method of upward air discharge. The air duct is inserted into the bottom of the gas collection cylinder, so that the air in the bottle gradually comes out. When the wooden strips burning at the mouth of the bottle are extinguished, the carbon dioxide is full.
There is another way to heat sodium bicarbonate. Take the sodium bicarbonate and put it in the test tube, fix it on the iron frame, and tilt the nozzle slightly downward to prevent the backflow of condensate from causing the test tube to break. Heat with an alcohol lamp, the sodium bicarbonate decomposes to produce sodium carbonate, water and carbon dioxide. The formula is: 2NaHCO < unk > $\ stackrel {\ triangle} {=} $Na < unk > CO < unk > + H < unk > O + CO < unk > ↑.
can also be made of sodium carbonate and dilute hydrochloric acid, but the reaction speed is not easy to control, so it is often not used.
The method of making dioxygen has its own advantages and disadvantages, and it should be selected according to the situation.
What are the precautions for storing and transporting 2,4-dichlorothiophenol salts?






















Secondly, the temperature is also low. The temperature of this crystal is sensitive, under high temperature, or it can be decomposed and reversed, reducing its temperature and quality. Therefore, the temperature of the crystal is maintained at the appropriate temperature, generally low and good, which can avoid it due to the temperature wave.
Furthermore, the storage container needs to be selected. The use of corrosion-resistant materials, because dioxysilicone has a certain degree of corrosion, if the container is not corrosion-resistant, or is corroded and leaked, it will not only stain the environment, but also be damaged.
It is indispensable for shock protection. Dioxysilicone crystals are brittle, and if they are subjected to strong shocks and collisions on the way, the crystals will be easily broken, which will affect their use. Therefore, it should be properly wrapped in soft materials, with less vibration.
The environment of the tool should also be paid attention to, and it is necessary to keep it dry and low, which is the same as the storage requirements. And the process must be determined to avoid emergencies, strong bumps and other situations, so as to protect the integrity of the crystal. In this way, it is necessary to properly store the crystals of dioxysilicone, so that its performance is not damaged.
What are the effects of 2,4-dichlorothiophenol on the environment and human health?
"Tiangong Kaiwu" is a scientific and technological masterpiece written by Song Yingxing in the Ming Dynasty. Today, in ancient classical Chinese, it describes the impact of barium and aluminium fluoride mines on the environment and human health.
The barium and aluminium fluoride mines are hidden in mountains and rivers. Its impact on the environment is quite far-reaching. The things in the mine, if they escape from the outside, enter the water and soil. The water and soil are dyed, and the vegetation changes. The genus of grass and trees, whether withered or withered, is difficult to revive. Because of the harmful substances in the mine, the order of its growth is disrupted, and its physiological ability is damaged. And the water flows through the mine, the water quality turns bad, the smell changes color, and the genus of fish and shrimp is also difficult to exist. The poison in the water flows down the river and affects other places, causing ecological imbalance in one water area.
As for personal health, the harm is also huge. If a person approaches this mine and inhales mineral dust, the lungs and organs will be injured first. Light coughs and asthma, severe cases are riddled with tuberculosis and diarrhea, and breathing is difficult. If you eat water or food containing harmful substances from this mine by mistake, the stomach will be invaded, abdominal pain and diarrhea, and the functions of the viscera will gradually weaken. If a woman is in this situation, the fetal pregnancy will be easily affected, and the children she gives birth to may be incomplete. And the poison of this mine is easy to accumulate in the body, and it will occur for a long time. All diseases are plagued, and non-medicine and stones are easy to heal.
Therefore, in the place of barium and aluminium fluoride ore, one should be cautious, observe the situation, and prevent its harm, so as to ensure the safety of the environment and personal health.