Benzene, 1-Chloro-2-Isothiocyanato-

Linshang Chemical

Specifications

HS Code

620298

Chemical Formula C7H4ClNS
Molecular Weight 169.63 g/mol

As an accredited Benzene, 1-Chloro-2-Isothiocyanato- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 500 - gram bottles containing 1 - chloro - 2 - isothiocyanato - benzene, well - sealed for chemical storage.
Storage 1 - Chloro - 2 - isothiocyanatobenzene should be stored in a cool, dry, well - ventilated area. Keep it away from heat sources, flames, and incompatible substances like strong oxidizers, acids, and bases. Store in a tightly - sealed container, preferably made of corrosion - resistant materials, to prevent leakage and vapor release, ensuring safety during storage.
Shipping 1 - Chloro - 2 - isothiocyanatobenzene is a hazardous chemical. Shipping requires compliance with strict regulations. It must be packaged in suitable, leak - proof containers, labeled clearly, and transported by carriers authorized for such chemicals.
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Benzene, 1-Chloro-2-Isothiocyanato- Benzene, 1-Chloro-2-Isothiocyanato-
General Information
Where to Buy Benzene, 1-Chloro-2-Isothiocyanato- in China?
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Frequently Asked Questions

As a leading Benzene, 1-Chloro-2-Isothiocyanato- 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 this product 1-chloro-2-isothiocyanate phenyl ester
This substance, benzyl 1-chloro-2-isopropyl benzoate, is one of the organic compounds. Its chemical properties are quite unique, let me explain in detail for you.
First of all, in its molecular structure, chlorine atoms, isopropyl groups, and benzyl benzoate groups are connected to each other, giving this substance a specific chemical activity. Chlorine atoms have certain electronegativity, which can cause changes in the distribution of electron clouds in chemical reactions, making the substance easy to participate in nucleophilic substitution reactions. For example, under appropriate basic conditions and the action of nucleophilic reagents, chlorine atoms can be replaced by other nucleophilic groups, thereby generating novel organic compounds.
Furthermore, the presence of isopropyl groups has a great influence on the spatial structure and electronic effects of molecules. It is a donor group, which will increase the electron cloud density of the benzene ring and improve the electrophilic substitution activity of the benzene ring. However, due to the large steric resistance of isopropyl groups, in some reaction processes, it will hinder the reactants from approaching the reaction check point and have an effect on the reaction selectivity.
The benzyl benzoate part has the characteristics of both ester groups and benzene rings. The chemical properties of ester groups are relatively active, and hydrolysis can occur under acidic or alkaline conditions. When acidic hydrolysis, benzoic acid and benzyl alcohol will be formed; when alkaline hydrolysis, benzoate and benzyl alcohol will be formed. At the same time, the benzene ring can undergo common electrophilic substitution reactions, such as halogenation, nitration, sulfonation, etc.
In addition, the chemical stability of this substance is also related to the environment. It is relatively stable in a dry environment at room temperature and pressure; but when exposed to high temperature, light, strong oxidants or specific catalysts, it is prone to chemical reactions, resulting in changes in molecular structure.
In summary, the chemical properties of 1-chloro-2-isopropylbenzyl benzoate are rich and diverse, and the interaction of various groups in its structure determines its reactivity and reaction type under different chemical environments.
What are the main uses of phenyl 1-chloro-2-isothiocyanate?
Mercury, also known as mercury, is a rare metal that has many uses in ancient times. And isomerate alum pills are a special class of chemical agents that also played an important role in ancient times.
Mercury was often used in alchemy in ancient times. Alchemists firmly believe that through special refining methods, mercury and other substances can be converted into elixirs of immortality. For example, Qin Shi Huang was enthusiastic about this and sent alchemists to search and refine mercury-containing elixirs, hoping to achieve longevity.
In the medical field, mercury is also used. Ancient doctors found that mercury has certain curative effects on certain skin diseases and parasitic diseases. However, due to the toxicity of mercury, it needs to be used with extreme caution. If the dose is controlled improperly, it may cause serious poisoning reactions.
In addition, mercury also plays an auxiliary role in metal smelting. It can be used to extract precious metals such as gold and silver, and it can be effectively separated and purified by taking advantage of the characteristics that mercury can form amalgam with these metals.
Isommercurate alum, mostly appeared in ancient chemical experiments and medical development. Some alchemists believe that it has unique pharmacological and magical effects, and try to use it to prepare special medicinal pills. In some ancient medical texts, isommercurate alum pills were specially processed and could be used to treat intractable diseases. However, due to their complex compositions and unknown toxicity, the scope of use was relatively narrow, and they were only used by a few experienced physicians or alchemists. Overall, although mercury and isommercurate alum pills were used in ancient times, they were always used with caution and exploration due to the risk of toxicity.
What is the production method of phenyl 1-chloro-2-isothiocyanate?
For saltpeter, it is also an essential material for making isothionite paste. Its method was studied by the ancient Fang family.
First take the clean saltpeter and put it in a cleaner. The ancient classics said that the saltpeter should be selected as white as frost and pure without impurities. Afterwards, it should be matched with sulfur. Sulfur should also be selected as pure, except for its impurities. The ratio of the two has been tried countless times by the Fang family. Appropriate is the best, saltpeter is mostly, sulfur is second, and the cover needs to be properly blended because of its different properties.
Prepare both, and put them into the kettle. For the kettle, it is appropriate to cast iron, because it can withstand high temperature, and the material is solid, and it does not invade with medicinal materials. With a slow fire, you need to take care of it carefully. The size of the fire is related to success or failure. If the fire is small, the reaction will be slow, and if the fire is fierce, the medicinal materials will be easily destroyed. When the medicinal materials in the kettle gradually melt and combine with each other, this process is quite critical. It is necessary to adjust the heat in a timely manner according to the change of its shape and color.
After the synthesis is completed, move the kettle to a cool and ventilated place to let it cool slowly. At this time, the obtained product is isothionite paste. After grinding, purification and other processes to remove impurities and refine its quality, the finished product of isothionite paste can be obtained.
The preparation of this paste requires the operator to be skilled and meticulous, and must not be slightly wrong in heat, ratio, process, etc. Only in this way can a sophisticated isothionate paste be prepared for medicinal use and other needs.
What are the precautions for 1-chloro-2-isothiocyanate in storage and transportation?
Mercury and mercury thiocyanate need to pay attention to many things in storage and storage.
Mercury is a liquid gold, and it is easy to lose when it is often stored, and its evaporation is toxic. For mercury storage, a sealed container needs to be used to prevent mercury from evaporating and escaping. It is advisable to store it in a safe and well-connected place, and to avoid the acceleration of mercury due to the increase in temperature. Storage should avoid direct light, because it may affect the chemical quality of mercury. For mercury, the container needs to be solid and sealed to prevent the container from breaking and causing mercury leakage on the way. It should be equipped to prevent emergency treatment, such as mercury-absorbing materials, gas masks, etc. Once it leaks, it can be quickly treated to ensure human safety.
Mercury thiocyanate, the sexual phase is not active. The storage of mercury thiocyanate requires a dry environment, because it may cause biochemical reactions in contact with water, which may affect the quality of its products.

Therefore, mercury thiocyanate may be decomposed or other chemical reactions may be caused by mercury thiocyanate. The same product should be sealed and stored to prevent the components in the air, such as oxygen and moisture, from being connected. Mercury thiocyanate, the packaging should meet the requirements of the phase-hazardous chemical products, and do a good job of shock-proof and anti-shock measures to avoid damage caused by collisions and earthquakes on the way. People need to be well-trained and familiar with the characteristics of mercury thiocyanate and leakage and other urgent treatment methods.
In addition, mercury and mercury thiocyanate should be stored and stored in accordance with their chemical characteristics, and measures such as sealing, control, and moisture-proof should be taken to ensure the safety of people and items and prevent accidents from happening.
What are the effects of phenyl 1-chloro-2-isothiocyanate on the environment and human health?
Mercury, also known as mercury, is the only metal that is liquid at room temperature. It has special properties and has a significant impact on the environment and human health.
Mercury is highly volatile and easily evaporates from soil and water bodies to the atmosphere, and is transported globally by atmospheric circulation. Once it settles in water bodies, it is converted into methylmercury by microbial action, and its toxicity increases sharply. Methylmercury is easily ingested and enriched by aquatic organisms, amplified by the food chain, and is particularly threatened by humans at the top. In the environment, mercury can pollute soil and water bodies, causing soil fertility to decrease, water ecological imbalance, and aquatic biodiversity to decrease sharply.
Mercury is harmful to human health in many ways. Short-term exposure to high concentrations of mercury can cause acute poisoning, causing stomatitis, gastroenteritis, proteinuria and other symptoms, and even life-threatening. Long-term low-dose exposure, mercury accumulates in the body, damages the nervous system, causes memory loss, insomnia, mood swings, etc., and also affects cognitive and motor functions, especially the development of fetuses and children. Because it can pass through the placenta and blood-brain barrier, it hinders the normal development of the nervous system, causing children to have mental retardation, uncoordinated movement and other problems. The kidneys are also the target organs for mercury poisoning, which can cause renal damage, affect detoxification and metabolic functions.
Benzyl isothiocyanate is a bioactive ingredient contained in cruciferous vegetables. The impact of this substance on the environment and human health should not be underestimated.
At the environmental level, it has a natural inhibitory effect on some pests and pathogens, which can help reduce the use of chemical pesticides and maintain ecological balance. In the soil ecosystem, it may affect the structure and function of microbial communities, promote the growth of beneficial microorganisms, inhibit the reproduction of harmful microorganisms, and then improve soil health.
For human health, benzyl isothiocyanate has potential health benefits. Studies have shown that it may have antioxidant and anti-inflammatory properties, can scavenge free radicals in the body, reduce inflammation, and reduce the risk of chronic diseases. Some studies have shown that it may have inhibitory effects on cancer cell growth, can induce apoptosis of cancer cells, and interfere with the metabolic process of cancer cells. Although it cannot be used as a single anti-cancer therapy, it can be used as a cancer prevention and adjuvant treatment ingredient. In addition, it is beneficial to cardiovascular health, or can reduce blood lipids, inhibit platelet aggregation, and reduce the risk of cardiovascular disease.