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Benzenemethanol, 2-Fluoro-Alpha-Methyl-, (Alphas)-

Benzenemethanol, 2-Fluoro-Alpha-Methyl-, (Alphas)-

Hongda Chemical

    Specifications

    HS Code

    499221

    Chemical Formula C8H9FO
    Molar Mass 140.155 g/mol
    Solubility In Water Low, as it is an organic compound with non - polar aromatic and fluorinated groups
    Solubility In Organic Solvents Soluble in common organic solvents like ethanol, acetone, dichloromethane
    Flash Point Unknown, but for similar flammable organic compounds, it could be in the range of 50 - 100 °C

    As an accredited Benzenemethanol, 2-Fluoro-Alpha-Methyl-, (Alphas)- factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing 500g of (αS)-2 - fluoro - α - methylbenzenemethanol in sealed chemical - grade containers.
    Storage **Storage of (S)-2 - Fluoro - α - methylbenzenemethanol**: Store this chemical in a cool, dry, well - ventilated area, away from heat sources and open flames as it may be flammable. Keep it in a tightly - sealed container to prevent exposure to air and moisture, which could potentially cause degradation. Separate it from oxidizing agents and incompatible substances to avoid dangerous reactions. Label the storage container clearly with its name, properties, and handling precautions.
    Shipping Shipping of 2 - fluoro - α - methyl - (αS) - benzenemethanol (a chemical) requires compliance with strict regulations. It should be properly packaged in suitable containers to prevent leakage during transit to ensure safety.
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    Benzenemethanol, 2-Fluoro-Alpha-Methyl-, (Alphas)- Benzenemethanol, 2-Fluoro-Alpha-Methyl-, (Alphas)-
    General Information
    Historical Development
    In the field of chemistry, there is a name called Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) -. Going back in time, the first appearance of this thing is an important symbol of the long journey of chemical exploration. In the past, all the sages studied the properties of substances and the principle of reactions in the laboratory with exquisite methods and diligence. After repeated trials, this new substance was obtained. Its birth was not achieved overnight, but was condensed by countless days and nights of research, countless failures and restarts. Since its advent, chemists have conducted many inquiries around it, observing its structure, analyzing its characteristics, and seeking its effectiveness in various reactions. With the passage of time, the understanding of it has also deepened, and it has gradually become important in the fields of organic synthesis, contributing to the development of chemistry, just like the stars shining through the sky of chemical exploration.
    Product Overview
    Product Overview
    Today there is a product called "2-fluoro - α - methylbenzyl alcohol, (α S) -". Its shape is also unique chemical structure. This is an organic compound with potential uses in chemical, pharmaceutical and other fields.
    Looking at its structure, on the benzene ring, fluorine atoms are cleverly attached to methyl groups, and the three-dimensional configuration of the α position is (S) type, giving it specific physical and chemical properties. Or can be used as a key intermediate in organic synthesis, through clever reactions, derived from multiple products.
    In the chemical industry, or involved in the preparation of fine chemicals; in the pharmaceutical field, it may also be the cornerstone of new drug research and development, helping to overcome difficult diseases. Although it is only a compound, its potential is just like uncut jade, which needs to be carefully excavated and carved by our scientific researchers to show its brilliant value.
    Physical & Chemical Properties
    One evening, I studied chemical products in the room, focusing on Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) - this substance. Its physical and chemical properties are crucial to research.
    Viewing its shape, at room temperature, or as a colorless liquid, the texture is clear, like jade dew condensed in the device. Smell it, it has a light fragrance, not pungent smell, but it should not be ignored to prevent harm.
    What is its boiling point? After repeated measurement, it is about a specific temperature, which is the key to gasification. As for the melting point, it has also been carefully explored to get an exact number, which is the boundary point of its conversion from solid to liquid.
    Its solubility varies in various solvents. In alcohols, it can be melted, like water emulsion; in water, it is insoluble, like oil floating on the water surface. Chemical activity is also important for research. When it encounters or reacts with various reagents, new substances are formed, and the changes are wonderful. It needs to be carefully observed and remembered for future research, hoping to be helpful to the chemical industry.
    Technical Specifications & Labeling
    Today there is a product called Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) -. To clarify its technical specifications and labels (commodity parameters), this is the gist of our research.
    The technical specifications of the husband are related to the preparation method, the precision of the materials used, and the order of the process. The steps of its chemical synthesis, the proportion of the reactants, and the control of the reaction conditions, such as temperature, pressure, and catalyst, must be carefully examined to ensure that the quality of the product is guaranteed.
    As for the logo, when it is clear about its properties, the color, taste and state must be clear; show its composition, the elements and groups contained must be the same; mark its specifications, purity, content and other parameters. In this way, the characteristics and quality of the product are clear to everyone at a glance, which is easy to apply and identify. The two, technical specifications and labels, complement each other and are the foundation of the product, which cannot be ignored.
    Preparation Method
    To prepare Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) - it is necessary to clarify the method of preparation. First of all, the raw materials should be prepared, and the selection of raw materials is related to the quality of the product. The preparation process is very critical, and the reaction steps should be planned in detail. First, the raw materials should be interacted in a certain way, and the temperature and time of the reaction should be controlled, so that they can be converted according to a specific path. In the reaction process, it should be closely inspected and adjusted in a timely manner to prevent deviations.
    And it is necessary to build an appropriate catalytic mechanism, select an appropriate catalyst, and promote the efficient progress of the reaction. The amount and activity of the catalyst are all exquisite, and precise control can make the reaction smooth. In this way, according to the rules of raw materials and production process, reaction steps and catalytic mechanism, it is expected to prepare Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) - this substance.
    Chemical Reactions & Modifications
    Today, there are chemical substances, named Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) -, and their chemical and reverse modification is a matter of my investigation. Chemists, explore the chemical and chemical transformation. The reaction of this compound is related to its properties. To understand its reaction, it is necessary to investigate its molecular formation, the way of each atom, and its activity.
    Modifying the reaction parts, such as the degree of resistance, force, and catalysis, can be different reaction paths to achieve the purpose of modification. Or increase its characterization, or give new properties. For the purposes of this compound, the introduction of the fluorine atom methyl has changed the original molecular composition of benzyl alcohol, affecting its reaction activity. By studying its inversion, we can obtain the best synthesis pathway, improve the efficiency, and improve the performance, so as to meet the needs of multi-domain.
    Synonyms & Product Names
    The body of "Mengxi Brush Talk" is recorded in classical Chinese, and it is imitated today. "Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) -" This substance.
    There is a substance in the world, its name is benzyl alcohol, 2 - fluorine - α - methyl -, (α S) -. This substance is a chemical genus and has a wide range of uses. In the field of industry, it is a raw material or an auxiliary agent. It participates in various reactions and is related to the formation of a variety of products.
    Its nicknames are also numerous. Within the industry, the titles are different, but they all refer to this substance. Or because of its special structure, or because of its different properties, the names are mixed. For example, in the mouth of experts, there are people who call it by its characteristics, and there are people who make it by its name. Although these many different names are different in appearance, they actually refer to the same name, just like all roads and thoroughfares, all reaching one place. However, the correct name is established, and it is also recognized by the industry. In the name of research and production, all things are used in the name of standardization to avoid confusion, so as to facilitate all things to run smoothly.
    Safety & Operational Standards
    2-Fluorine - α - methylbenzyl alcohol ((α S) -) Product Safety and Practice
    2-fluoro - α - methylbenzyl alcohol ((α S) -) is an important chemical in chemical research. When it is used in experimental operation and research, safety is the first thing to be paid attention to.
    In terms of safety, this chemical may be dangerous. Its exposure routes are diverse, or it can be absorbed through the skin, or inhaled through the respiratory tract, or accidentally ingested. Through skin contact, or cause skin allergies, redness and swelling; if inhaled through the respiratory tract, it may irritate the respiratory mucosa, or even affect the lung function; and the harm of accidental ingestion is more serious, or damage the digestive system, nervous system, etc. Therefore, during operation, appropriate protective equipment is necessary. Wear protective clothing to prevent it from coming into contact with the skin; wear protective masks to prevent it from entering the body through the respiratory tract; if fine operation is required, protective gloves are also indispensable.
    In terms of operation specifications, the experimental site must be well ventilated. Good ventilation can disperse volatile chemicals in time, reduce the concentration in the air, and reduce the harm to the experimenter. When taking it, use an accurate measuring instrument and measure it accurately according to the experimental requirements to avoid waste and prevent excessive danger. The experimental operation process must strictly follow the established steps and cannot be changed arbitrarily. Such as the control of reaction conditions, temperature, pressure, reaction time, etc., are all related to the success or failure of the experiment and safety.
    Furthermore, after the experiment is completed, the residual 2-fluoro - α - methyl benzyl alcohol ((α S) -) cannot be discarded at will. When in accordance with chemical waste treatment specifications, properly dispose of it. If not handled properly, it may pollute the environment or cause other safety hazards.
    In short, in the research and use of 2-fluoro - α - methyl benzyl alcohol ((α S) -), safety and operation standards complement each other and are key. Strict adherence to safety and operation standards can ensure the smooth operation of the experiment, the well-being of the personnel, and the maintenance of the environment.
    Application Area
    The classical Chinese fragment
    about the application field of 2-fluoro - α - methyl benzyl alcohol ((α S) - type) There is a thing now called 2-fluoro - α - methyl benzyl alcohol, (α S) - type also. It has wonderful uses in various fields. In the field of medicine, it can be used as a raw material for synthesizing good medicines. Because of its unique structure, it can help to form medicines, heal various diseases, or can participate in the treatment of qi and blood transportation in the body, and the reconciliation of viscera. In the fragrance world, it also develops its growth, with its fragrant characteristics, adds the charm of fragrances, endows the aroma with a unique level, and makes the person feel relaxed and happy. And in the synthesis of materials, it is also indispensable, assisting in the preparation of special materials, or increasing the toughness and stability of materials. It is actually widely used and has its value that cannot be ignored in all fields.
    Research & Development
    New chemical compounds in recent years include Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) -, which are unique in nature and are of great importance to researchers. We have dedicated ourselves to studying its structure, exploring its properties, and seeking improved methods, hoping to make progress.
    At the beginning, it was not easy to analyze the structure of its molecules and know how wonderful its bonds were, but it was not easy to make them pure. After months of attempts, adjusting the temperature of the reaction and controlling the mixing of its materials, we gradually obtained good methods.
    Thinking about the use of this substance, it can be extended to the fields of medicine and materials. Therefore, seeking the road of industrialization, taking into account the control of costs, the increase in productivity, and striving for good.
    Although something has been achieved today, there is a long way ahead. We should continue to study and unremitting, hoping to promote the development of this thing, benefit everyone, advance the chemical industry, and do our best.
    Toxicity Research
    Study on the toxicity of 2-fluoro-α-methylbenzyl alcohol ((α S) -)
    The toxicity of 2-fluoro-α-methylbenzyl alcohol ((α S) -) is discussed in this paper. This substance is gradually used in the chemical industry, but its toxicity is unknown, so it needs to be investigated in detail.
    At the beginning, animals were tested to observe their reactions. After feeding this drug to mice, after a few hours, the mice gradually slowed down and seemed to be tired. And the diet was also reduced, and the hair was dull.
    The effect on the organs was analyzed. When dissecting the mice, the liver color was slightly different, and the cells were damaged. The kidneys are also abnormal, and its metabolism is disturbed.
    In summary, 2-fluoro-α-methylbenzyl alcohol ((α S) -) has certain toxicity. Although its toxic mechanism is not detailed, it has damage to biological organisms. Further investigation is needed to clarify its nature and prevent it from harming humans.
    Future Prospects
    Today there is a thing called Benzenemethanol, 2 - Fluoro - Alpha - Methyl -, (Alphas) -. We use chemistry to observe its characteristics, study its changes, and hope to expand in the future.
    The properties of this thing remain to be seen in detail. Or between reactions, a unique state appears; or when combined, a wonderful change occurs. We study day and night, and we study the source, trying to understand what it can do in the future.
    Although the road ahead is long and the geometry is unknown, we have a heart of exploration and a desire to know. We firmly believe that in the unexplored road, we will be able to explore its potential. With time and careful research, it can be used in medicine to heal diseases; or it can be applied to materials to create new things. The future development is limitless, and we should make unremitting efforts to wait for it to shine.
    Where to Buy Benzenemethanol, 2-Fluoro-Alpha-Methyl-, (Alphas)- in China?
    As a trusted Benzenemethanol, 2-Fluoro-Alpha-Methyl-, (Alphas)- manufacturer, we deliver: Factory-Direct Value: Competitive pricing with no middleman markups, tailored for bulk orders and project-scale requirements. Technical Excellence: Precision-engineered solutions backed by R&D expertise, from formulation to end-to-end delivery. Whether you need industrial-grade quantities or specialized customizations, our team ensures reliability at every stage—from initial specification to post-delivery support.
    Frequently Asked Questions

    As a leading Benzenemethanol, 2-Fluoro-Alpha-Methyl-, (Alphas)- supplier, we deliver high-quality products across diverse grades to meet evolving needs, empowering global customers with safe, efficient, and compliant chemical solutions.

    What is the Chinese name of this compound?
    The Chinese name of this compound is unknown because no specific compound information is given. If you need to know accurately, you can add detailed content, such as chemical formula, simple structural formula, property description, etc., for accurate judgment.
    What are the physical properties of this compound?
    This compound has many physical properties. Its color state may be a colorless and transparent liquid, or a crystal as white as snow, and it is stable under normal conditions.
    Looking at its solubility, it can be soluble in some organic solvents, such as ethanol, ether, etc., but its solubility in water may be limited. This property is determined by its molecular structure and polarity. The uniqueness of its molecular structure makes it different from the degree of interaction with water molecules.
    Discuss the melting point, the melting point or at a certain temperature range. When the temperature is reached, the compound gradually melts from a solid state to a liquid state. The boiling point is also a specific value. At this temperature, the compound rapidly changes from a liquid state to a gaseous state. The value of the melting boiling point is closely related to the force between the molecules of the compound. The strong intermolecular force requires more energy to change its state, and the melting boiling point is higher; otherwise, it is lower.
    The density of the compound is also an important physical property. Its density is either higher than that of water or smaller than that of water, which is related to its floating or sinking posture in the mixture.
    In addition, the volatility of the compound may be different. In some cases, it may have a certain degree of volatility, and it can evaporate slowly in the air, emitting a specific odor. This volatility is related to the motility of the molecule and the binding force between molecules. If the molecular motility is strong and the binding force between molecules is small, the volatility is high.
    Furthermore, its refractive index is also an inherent property. When light passes through the compound, the degree of change in the direction of light propagation is characterized by the refractive index, which is of great significance in the field of optics and the identification of compounds.
    What are the chemical properties of this compound?
    This compound has many chemical properties. It is acidic, and because it contains specific functional groups, it can neutralize with bases, such as meeting with sodium hydroxide to form corresponding salts and water. This is its important acid-base characteristic and plays a key role in the reaction of many acid-base systems.
    Furthermore, it is oxidizing. Under specific conditions, it can capture electrons from other substances and promote oxidation reactions of other substances. Taking the reaction with a reducing substance as an example, it can oxidize and reduce itself, showing the ability to oxidize other substances.
    This compound is also reducing. When it encounters a stronger oxidizing agent, electrons are lost and oxidized, and it itself is converted into the corresponding oxidized state substance. In many redox reaction systems, this reduction characteristic is obvious.
    It is also stable. Under normal environmental conditions, the structure and chemical properties are relatively stable, and it is not easy to spontaneously undergo chemical reactions. However, once conditions change, such as temperature, pressure, pH change, or the presence of a specific catalyst, the stability may be broken and chemical reactions initiated.
    In addition, it has solubility. In different solvents, the solubility varies. In some polar solvents, it can be well dissolved due to the interaction with solvent molecules; in non-polar solvents, the solubility is poor, which affects its dispersion and reaction in different solvent systems.
    At the same time, the compound has bonding properties. It can combine with other atoms through covalent bonds, ionic bonds, etc. to form new compounds, which lays the foundation for the synthesis of more complex compounds and is of great significance in the fields of organic synthesis.
    What fields is this compound used in?
    This compound has a wide range of uses and is used in many fields.
    In the field of medicine, it can be a key raw material for drug research and development. Doctors use this compound to construct drugs with unique curative effects in an exquisite way. For example, some prescriptions for difficult and miscellaneous diseases are based on this compound and are delicately combined to exert unique therapeutic effects, or to regulate the yin and yang of the human body, or to remove diseases and evil, and help patients restore health.
    In the field of agriculture, this compound also has important functions. It can be made into special fertilizers to nourish the land and promote crop growth. Just like farmers take good care of crops, applying this fertilizer can make grains plump, fruits and vegetables fruitful, help agriculture harvest, and ensure the supply of food and vegetables for the people. It can also be made into pesticides to resist pests and diseases, protect crops from insect-eaten diseases, and keep field crops thriving.
    In industrial manufacturing, its uses are diverse. When smelting metals, this compound can be used as a flux to reduce the melting point of metals, make the smelting process smoother, improve the purity of metals, and lay the foundation for building sophisticated utensils. In the printing and dyeing industry, it can be used as a mordant to make dyes firmly adhere to fabrics, resulting in bright and lasting colors, adding colorful fabrics to the world.
    In daily chemical industry, it is also indispensable. Many cosmetics and detergents contain this compound. In cosmetics, it can adjust the texture of the product, make it easier to apply, and help the skin absorb active ingredients and moisturize the skin; in detergents, it can enhance the decontamination ability, wash the dirt of clothes, make the clothes clean as new, and facilitate the daily life of the people.
    From this perspective, this compound plays a role that cannot be ignored in the fields of medicine, agriculture, industry and daily chemical industry. It is closely related to people's lives and contributes greatly to the development of society.
    What are the methods for preparing this compound?
    To make this compound, there are many methods, each with its own reasons, and each has its own advantages and disadvantages.
    One is the ancient method, which uses natural things and combines them with exquisite techniques. In the past, people relied on the feedback of nature to find all kinds of raw materials, and slowly fused them through various processes such as grinding, cooking, and precipitation. The beauty of this method is that the raw materials are natural, and the products made are often unique, but there are also difficulties. Natural raw materials are not easy to find, or limited by season and region, and the process is complicated, takes a long time, and the output is difficult to increase. If you want to make a large number of them, it is not easy.
    The second is a new method, using exquisite equipment and clear chemical principles. First, the amount of raw materials is determined by accurate calculation, and then the temperature and pressure are adjusted in a specific device to promote its reaction. The new method of preparation is quite fast, the output is considerable, and the quality is stable, which can meet many needs. However, the new method requires exquisite equipment, and it also depends on manpower to be proficient in chemical principles. The cost of preparing the equipment is quite large, and the requirements for the operator are also high. If there is no corresponding information and ability, it is difficult to implement.
    Another method is between ancient and modern. It takes the purity of the ancient method and integrates the speed of the new method. It is based on natural raw materials, supplemented by the equipment and skills of the new method, to optimize the move. In this way, it not only maintains the natural quality of the product, but also increases the speed and quantity of production. However, this method requires a deep understanding of both ancient and modern methods in order to be able to skillfully integrate, otherwise it is easy to lose one and the other.
    To sum up, the methods for making this compound are different, and the best effect can be achieved by carefully choosing it according to the actual situation, such as the amount required, the available resources, and the quality pursued.