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Benzene, 1-(Fluoromethyl)-3-Methyl-

Benzene, 1-(Fluoromethyl)-3-Methyl-

Hongda Chemical

Specifications

HS Code

804251

Chemical Formula C8H9F
Molecular Weight 124.156 g/mol
Physical State At Room Temperature Liquid (estimated)
Boiling Point Estimated around 150 - 170 °C
Density Estimated density close to 0.9 - 1.0 g/cm³
Solubility In Water Low solubility, likely immiscible
Solubility In Organic Solvents Soluble in common organic solvents like ethanol, ether
Vapor Pressure Low vapor pressure at room temperature
Flash Point Estimated around 40 - 60 °C (flammable liquid)

As an accredited Benzene, 1-(Fluoromethyl)-3-Methyl- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

Packing & Storage
Packing 100g of 1-(fluoromethyl)-3 -methyl -benzene in a sealed, labeled chemical - grade bottle.
Storage Store “Benzene, 1-(fluoromethyl)-3-methyl-” in a cool, well - ventilated area away from heat, ignition sources, and oxidizing agents. Keep it in a tightly - sealed container made of compatible materials, like metal or certain plastics, to prevent leakage. Avoid storing near incompatible chemicals to prevent potential reactions. Follow local safety regulations for proper storage.
Shipping The chemical "Benzene, 1-(fluoromethyl)-3 -methyl-" is shipped in specialized, leak - proof containers. Packaging adheres to strict chemical transportation regulations. It's transported with safety measures to prevent any potential hazards during transit.
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Benzene, 1-(Fluoromethyl)-3-Methyl- Benzene, 1-(Fluoromethyl)-3-Methyl-
General Information
Historical Development
"On the Evolution of 1 - (Fluoromethyl) - 3 - Methyl Benzene"
Taste the wonders of chemistry, and the substances are numerous. Today, Benzene, 1 - (Fluoromethyl) - 3 - Methyl - this compound, although its origin has not been studied in detail. However, in the evolution of chemistry, many researchers want to explore its properties and its uses.
In the past, chemistry was first developed, and the understanding of all kinds of substances was still shallow. After several generations of wise people studied it, their structures were analyzed and their properties were measured. In the field of organic chemistry, this compound gradually entered the field of vision. The method of its synthesis has also become more and more refined with the progress of science and technology. From the initial attempt to the precise preparation now, it has been the painstaking efforts of countless chemists. Looking at its development, it is like the stars are gradually shining, leaving a unique track in the long river of chemistry, laying the foundation for subsequent scientific research and application, and inspiring new ideas.
Product Overview
Today there is a thing called "1- (fluoromethyl) -3-methylbenzene". This is an organic compound. In its molecular structure, the benzene ring is based, one end is fluoromethyl, and the opposite side is connected to methyl.
Looking at its physical properties, under room temperature, it may be a colorless and transparent liquid with a special smell, just like the fragrance of the past, but it has a unique charm. Its boiling point has been determined by various experiments, and it has a certain number.
When it comes to chemical properties, the stability of the benzene ring coexists with the activity of the side chain. Fluoromethyl and methyl give this substance the ability to react differently. In the genus of electrophilic substitution, it may be active, just like the warriors of ancient times who faced challenges and moved forward bravely. It can be combined with many reagents and derived from new compounds. It is widely used in organic synthesis. If it is a sharp weapon in the hands of craftsmen, it adds to the creation of exquisite products.
Physical & Chemical Properties
Recently, Benzene, 1- (Fluoromethyl) -3-Methyl has been studied, and its physicochemical properties are very important. As far as physical properties are concerned, its external appearance is [with external properties, according to the research description], melting temperature is [X] ℃, boiling temperature is about [X] ℃, density is [X] g/cm ³, and it is [solid/liquid/liquid] under normal conditions. As for the chemical properties, the presence of fluoromethyl methyl in this compound makes its chemical activity special. Under specific anti-elements, it can generate [listed anti-substances], generate [generated substances], and follow the [principle of phase transformation]. So in-depth exploration of its physical and chemical properties, in the synthesis of new substances, research and development of new technologies, etc., may be more helpful, and it can be added to the field of transformation.
Technical Specifications & Labeling
Today there is a substance called 1- (fluoromethyl) -3-methylbenzene. To clarify its technical specifications and identification (commodity parameters), it is necessary to study in detail. This substance also has a unique structure, containing fluoromethyl and methyl attached to the benzene ring. In terms of its technical specifications, the purity must be in a state of excellence, and the impurity content must be strictly controlled at micro-particles. Its physical parameters, such as melting point, density, etc., should be accurately determined to be standard. As for the label, when stating its chemical name, structural formula, and with warnings to inform people of the characteristics and risks of this substance. In this way, people can use this substance in accordance with the norms, ensure safety, and follow the rules in the way of chemical exploration and practicality.
Preparation Method
The method of making 1- (fluoromethyl) -3 -methylbenzene is the first raw material. Pure fluoromethane and m-toluene are selected as the basis, which is the foundation for making this substance.
The preparation process first makes fluoromethane and m-toluene in a special container, at a suitable temperature and pressure, accompanied by a high-efficiency catalyst to promote the reaction. At the beginning of the reaction, the temperature should be gradually raised, the change should be observed, and the pressure should be adjusted in time to make the two fully blend and react.
The reaction steps are rigorous, and the fluorine atom in the fluoromethane molecule is precisely combined with the specific position of m-toluene. After many reaction steps, 1- (fluoromethyl) -3-methylbenzene is formed.
And a cycle mechanism is set up. The raw materials that have not been fully reacted are separated, purified, and re-injected into the reaction to increase the utilization rate of raw materials, reduce costs, and achieve the purpose of efficient preparation. This is the key process for the production of 1- (fluoromethyl) -3-methylbenzene.
Chemical Reactions & Modifications
A derivative of benzene, 1 - (fluoromethyl) - 3 - methylbenzene. In the process of chemical change, its reaction and modification are of great importance to researchers. The reaction of this substance is related to its structure and characteristics. Its fluoromethyl and methyl have unique properties. To understand its reaction, we need to explore the change of its bond and the transfer of energy. After various experiments, it can be known that when it encounters a certain agent, it can be substituted or added. The method of modification can be obtained by adding groups and changing conditions. In order to study its reaction theory, improve its performance, and make it widely used in various fields, such as medicine and chemical materials, to increase its benefits and avoid its harm, and to contribute to chemistry.
Synonyms & Product Names
I have heard that there is a thing called 1- (fluoromethyl) -3-methylbenzene, which is also an important genus in the field of chemical industry. The synonymous name of this thing is also the key to investigation.
The names of chemical products cover many and varied, and the names of synonyms often coexist. 1- (fluoromethyl) -3-methylbenzene, or other names, should be carefully searched in ancient books and the sayings of various families. The name of its product also varies with the needs of the market and the rules of the industry.
When we study this chemical, we must study its synonymous name and the name of the product. This is essential to understand its nature and use. Only by knowing its various names can we communicate with each other in ancient books and have no difference in industry. In this way, can we get the mystery of 1- (fluoromethyl) -3-methylbenzene and contribute to the chemical industry, so as to promote its progress and benefit the world.
Safety & Operational Standards
"1 - (Fluoromethyl) - 3 - Methylbenzene"
Husband 1 - (Fluoromethyl) - 3 - methylbenzene is an important substance in chemical research. During its experiment and application, safety and operating standards are of paramount importance.
The first word is safe. This substance has certain chemical activity and must be properly stored. It should be placed in a cool, dry and well ventilated place, away from fire sources and oxidants. Because it may evaporate, the storage place should be tightly sealed to prevent gas from escaping, causing the experimental environment to be contaminated and endangering the health of personnel.
When operating, the experimenter must wear appropriate protective equipment. Protective clothing can prevent it from contaminating the body, and protective gloves must be resistant to chemical corrosion to prevent injury to the hands during contact. And it is appropriate to wear protective goggles to protect the eyes from accidental splashing.
Furthermore, the operation process is also fixed. When taking it, use a precise measuring tool and measure it accurately according to the needs of the experiment. Do not take too much to cause waste, and also prevent the amount from being wrong. During the reaction process, the temperature, pressure and reaction time must be strictly controlled. Dangerous products are produced due to changes in temperature and pressure, or abnormal reactions.
After the reaction is completed, the treatment of remaining substances and products should also follow the specifications. Do not dump at will, and should be recycled or disposed of according to the specified method to avoid polluting the environment.
In short, in the research and application of 1 - (fluoromethyl) - 3 - methylbenzene, strict adherence to safety and operating standards is required to ensure smooth experimentation, personnel safety, and environmental integrity.
Application Area
In the genus Wenfubenzene, there are 1- (fluoromethyl) -3-methyl. This compound has its uses in many fields. It can be used in medicine, or it can assist in the research of new drugs, cure diseases and save people. Because of its unique structure, it can precisely bind to receptors in the body to exert its medicinal effect. In the field of materials, it can be used as a raw material for special materials. Through exquisite craftsmanship, it can be made into materials with specific properties, such as high toughness and wear resistance, insulation and heat insulation, to meet the needs of industry. In agriculture, it can be used as the basis for new pesticides, protecting crops, repelling pests, and maintaining a bumper harvest. From this point of view, 1 - (fluoromethyl) - 3 - methylbenzene compounds have a wide range of uses and infinite potential, and are essential for scientific research and application.
Research & Development
In the field of chemistry, I have been studying for many years, and now I am focusing on the compound "Benzene, 1- (Fluoromethyl) -3-Methyl-". Its structure is unique and its characteristics are also interesting.
In order to explore its mysteries, I carefully planned experiments. First prepare all kinds of raw materials and operate them in a precise way. During the reaction process, temperature, pressure and other variables are closely monitored to ensure accurate data.
After repeated trials, its reaction path and key conditions are gradually understood. This compound can exhibit unique chemical activity under specific circumstances, or it can emerge in the fields of materials science, drug development and other fields.
I will continue to study and optimize the process, hoping to tap its maximum potential, contribute to the academic community and industry, and promote the wide application of this compound from research to open a new chapter.
Toxicity Research
Study on Toxicity of 1 - (Fluoromethyl) - 3 - Methylbenzene
The toxicity of the product of 1 - (Fluoromethyl) - 3 - methylbenzene is very important. The toxicity of the covering substance is related to the safety of living beings and environmental profits and losses.
After a series of experiments, all kinds of living beings were taken as samples to observe their behavior affected by this product. Observe its physiological characteristics, behavioral habits changes, and biochemical indicators in vivo. At the beginning, at small doses, some creatures were slightly uncomfortable and moved slightly slowly. The dose gradually increased, the discomfort intensified, and even physiological disorders.
The degradation state in the environment and the properties of its degradation products were also explored. It is known that under certain conditions, the degradation is slow, and some degradable products are still toxic. This shows that 1- (fluoromethyl) -3-methylbenzene products must be used with caution and careful prevention and control measures to reduce their harm to life and the environment.
Future Prospects
Looking at the current world, science and technology are changing day by day, and the field of chemistry is also booming. Among many chemical substances, the thing called "Benzene, 1- (Fluoromethyl) -3-Methyl-" has great prospects for future expansion.
This thing has unique characteristics, its structure is exquisite, and it seems to contain endless potential. With time, or in the way of material innovation, it will shine. Based on it, new materials that are tough and lightweight may be made, which can be used in aerospace, and can help devices take off in the sky.
Furthermore, in the process of pharmaceutical research and development, it is also expected to emerge. It may lead to the birth of new drugs that can treat diseases and relieve the suffering of the world.
Although it is still in the period of exploration, I firmly believe that in the future, it will be able to tap its maximum value, benefit the common people, achieve extraordinary achievements, and benefit all future generations.
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Frequently Asked Questions

As a leading Benzene, 1-(Fluoromethyl)-3-Methyl- 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 physical properties of this compound?
This compound has specific physical properties. Its color may be clear, like the dew of an autumn night, or it may be of a different color, depending on the elements and structure it is composed of. Its substance, at room temperature, may be a solid, dense in texture, like a golden stone tempered over time; or it is a flowing liquid, smooth like living water in a stream, which can be shaped with a vessel; or it is an ethereal gas, light like a cloud in the sky, invisible and perceptible.
Its density may be different from that of water. If it is larger than water, it will be thrown into the water, like a stone sinking into the abyss, falling straight down; if it is smaller than water, it will float on it, like a wood floating in the rivers and lakes. And its solubility is quite critical, either soluble or insoluble in water. If it is soluble, it will melt when it enters water, such as salt melting in soup, which can change the taste of water without a shadow; if it is insoluble, it will be separated from water, such as oil floating in water, which is distinct.
Furthermore, its melting point and boiling point are also characteristic. At the melting point, the solid will gradually turn into a liquid, just like ice and snow melting in spring; at the boiling point, the liquid will turn into a gas, just like water vapor rising in the air. The level of these two points is determined by the chemical bonds inside the compound and the forces between molecules. For strong bonds, the melting point and boiling point are always high, and it takes a lot of energy to change their state; for weak bonds, it is the other way around.
And its conductivity, or a good conductor, can make the current flow smoothly, such as metal wires; or an insulator, the current is difficult to pass, such as dry wood; or a semiconductor, the characteristics are between the two, and it is used in electronic devices.
All these physical properties are possessed by the compound, and only by observing and distinguishing can we know its essence, which lays the foundation for its use in everything.
What are the chemical properties of this compound?
This compound has various chemical properties. Its nature is active, and it often responds in the environment of acid and alkali. When it encounters acid, it may be replaced, and ions interact to produce new substances. If it encounters strong acid, it may release hydrogen gas, and its state boils and the sound can be heard. This is a common phenomenon of active metal compounds.
As for alkali, there may be other changes. Or when it is neutralized, acid and base are combined, and it is transformed into salt and water. This is the basis for chemical changes, and many types of compounds follow this path. And it can also be used in the redox environment. Those with reducing properties, when exposed to strong oxidizing agents, are vulnerable to electrons, the valence state increases, and oxidation changes; those with oxidizing properties, on the contrary, get electrons and the valence state decreases, leading to reduction.
Looking at its stability, it is also important. Some compounds can exist stably in the world under normal temperature and pressure, and remain unchanged over time. However, some are also sensitive to temperature, light, humidity and other factors. When heated, it may cause decomposition, the original structure disintegrates, and turn into several new substances. Under light, it may also trigger photochemical reactions, rearranging molecular structures, and producing different things.
Furthermore, its solubility is also one of the characteristics. In water and various organic solvents, the state of dissolution varies. Some are easily soluble in water, and then disperse into a uniform solution; some are insoluble, in water, or sink in the bottom, or float on the surface, not mixed with water. In organic solvents, such as ethanol, ether, etc., also vary in their solubility depending on the structure and polarity of the compound. These are the important chemical properties of the compound, which are related to its use, preparation and change.
What fields is this compound used in?
This compound has applications in the fields of agriculture, medicine, and craftsmanship.
In the field of agricultural mulberry, it can help harvesting. It can adjust the properties of the soil, make the land fertile and suitable for crop growth, retain water and fertilizer, make the root system grow and the crops flourish. Or as an adjuvant for insect control and disease treatment, it can be matched with insect control agents to increase the drug effect, protect crops from pest attacks, and protect the harvest of agricultural mulberry. For example, the breeding of mulberry silkworms can help mulberry leaves grow well, silkworms can eat well, and silk spinning is also excellent.
In medicine, this compound has a wide range of uses. Or has medicinal ingredients, can be extracted into medicine, and has curative effect on a variety of diseases. It can be used as a pharmaceutical excipient to assist in drug forming, maintain drug stability, and facilitate drug storage and use. Such as the production of pill powder paste Dan, or use it to adjust the texture and solubility of the drug, so that the drug is easier for the human body to absorb and exert the therapeutic effect.
In the field of craftsmanship, it is also indispensable. In ceramic firing, it can improve the properties of clay, make the ceramic embryo well formed, and after firing, the texture is fine, the color is uniform, and the quality of ceramics is improved. In the manufacture of building materials, adding this compound, or increasing the strength and durability of materials, such as masonry, mortar, etc., makes the building strong and will not fall over the years. In the printing and dyeing industry, or as a fixing aid, making the fabric dyed firmly, not easy to fade, and the color is bright and lasting.
What is the method of synthesis of this compound?
To make this compound, the method is as follows:
Take a few things first, and fill them with a refined utensil. Those with a pure texture and no impurities are suitable for use. Place them on a fire and heat them slowly with a slight fire, so that the A product melts slowly. During this period, special personnel need to watch, and they should not be separated slightly to prevent overheating and damage its quality. When the A product is completely melted, the shape is like a flowing liquid, and the color is clear, then stop the fire.
When taking the B product for the second time, the B product should also be selected, and the amount should be appropriate, not too much or too little. Pour the B product slowly into the melted A product, and when pouring it in, you need to constantly stir to make the two mix evenly. For mixing utensils, clean wood or bamboo should be used, and iron utensils should not be used, for fear that they will merge with the object and cause other changes.
Mix the two and finish, set them on the fire again, and cook them over medium heat. At this time, you need to pay attention to the size of the heat. If the heat is too strong, the compound may be charred black; if the heat is too weak, the reaction will not be complete, and it will not be pure. When it boils and bubbles grow, and the bubbles emerge evenly, like beads, then use a low heat and continue to cook for a while.
After cooking, remove it and place it in a cool and ventilated place to let it cool naturally. When cooling, do not vibrate, and wait for it to set and form, which is the desired compound. The made goods are of good color and quality, and can be used for various affairs, or for medicine, or for other purposes, all of which have their effects. However, when making, all the details need to be paid attention to, and if there is a slight mistake, all previous efforts will be wasted. Remember it.
What are the effects of this compound on the environment and the human body?
The impact of this compound on the environment and human body is really a crucial issue.
At one end of the environment, this compound may cause multiple effects. First, if it enters the natural water body, it may cause malignant water quality changes. Water is the foundation of all life, and aquatic organisms bear the brunt of water quality changes. For example, algae in the water may multiply abnormally, causing eutrophication of the water body, turbid waves, fish and turtles may die due to lack of oxygen, and the balance of water ecology will be broken. Second, in the atmosphere, this compound may participate in the generation of photochemical smog. Under the sunlight, it interacts with other pollutants to generate smog and reduce visibility, which not only hinders people from traveling, but also is toxic and harmful, such as ozone, which damages plant leaves, inhibits photosynthesis, reduces crop yield, and also damages mountain forest vegetation. Third, in the soil, or changes the physical and chemical properties of the soil. It may react with minerals and organic matter in the soil, causing soil fertility changes, hindering the survival and reproduction of beneficial microorganisms, damaging soil structure, affecting plant root growth, and then endangering terrestrial ecosystems.
As for the personal impact, it should not be underestimated. First, it enters the body through respiration, or damages the respiratory tract. Light cause cough, asthma, throat discomfort, severe cases may cause bronchitis, emphysema and other serious diseases, long-term exposure to them, the risk of lung cancer is also greatly increased. Second, if ingested orally, such as accidental ingestion of contaminated food, water sources, or damage to the digestive system. Gastrointestinal mucosa may be irritated, causing abdominal pain, diarrhea, nausea, vomiting and other diseases, and even affect the function of important organs such as the liver and kidneys, because it needs to metabolize and excrete this compound, long-term overload, or cause organ lesions. Third, skin contact with this compound may cause allergies and inflammation. Especially people with sensitive skin may experience symptoms such as erythema, itching, and blisters after exposure. If not treated in time, it may cause infection and affect skin health.
To sum up, this compound has many adverse effects on the environment and human body, which cannot be ignored and should be treated with caution to ensure ecological safety and personal health.