2 Isobutoxypyrazine
pyridine pyrrole pyrazine piperidine piperazine

2-isobutoxypyrazine

    Specifications

    HS Code

    257794

    Chemical Formula C8H12N2O
    Molecular Weight 152.194 g/mol
    Appearance Colorless to pale yellow liquid
    Odor Nutty, earthy odor
    Boiling Point Approximately 212 - 214 °C
    Density Around 1.02 g/cm³
    Solubility Slightly soluble in water, soluble in organic solvents
    Flash Point Probably around 87 °C (estimated for safety handling)
    Vapor Pressure Low vapor pressure at room temperature
    Stability Stable under normal conditions, but may react with strong oxidizing agents

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    General Information
    Where to Buy 2-isobutoxypyrazine in China?
    As a trusted 2-isobutoxypyrazine 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 2-isobutoxypyrazine 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 main use of 2-isobutoxypyrazine?
    2-Isobutoxypyrazine has a wide range of uses, especially in the field of fragrances. This substance can impart fragrance to various products and create a unique aroma atmosphere. In the food industry, it is often used as a edible fragrance and added to baked goods, candies, beverages, etc., which can increase its flavor and lure consumers' appetite. Because it can simulate the pleasant aroma of nuts, roasted incense, etc., it enriches the flavor level of food.
    In the field of daily chemicals, such as perfumes, air fresheners, etc., 2-isobutoxypyrazine is also used. In perfumes, it can be used as a fragrance ingredient to add a unique flavor to perfumes, or to strengthen and modify the overall flavor, making it more layered and unique. In the air freshener, it can mask the odor, emit a pleasant aroma, and create a comfortable environment.
    Furthermore, in the tobacco industry, 2-isobutoxypyrazine can be used for tobacco flavoring. By adding this substance, tobacco can produce a more mellow and rich aroma when burned and inhaled, reduce irritation, improve the taste quality, and enhance the sensory experience of tobacco products to meet consumers' higher requirements for tobacco aroma and taste.
    In summary, 2-isobutoxypyrazine plays an important role in many fields with its unique aroma characteristics, enhancing the flavor and quality of products, and meeting the needs of different industries and consumers.
    What are the physical properties of 2-isobutoxypyrazine?
    2-Isobutoxypyrazine, its physical properties are as follows:
    This substance is a colorless to light yellow liquid at room temperature, with a special aroma, and it smells like nuts and roasted incense. This aroma is unique and highly recognizable, often emerging in the field of food and flavors. Its boiling point is about a certain range, and it varies slightly due to specific conditions. Generally speaking, under a specific pressure environment, the boiling point can reach a certain value, which is convenient for its application in separation, purification and other operations. The density of
    2-isobutoxypyrazine is also an important physical property. At a specific temperature, its density is stable, so it can be separated and identified in mixed systems. And its solubility is characterized, it is soluble in organic solvents such as ethanol and ether, but limited in water. This difference in solubility plays a significant role in the extraction and reaction process, which is conducive to the design and implementation of related processes. At the same time, its refractive index is fixed and can be measured by precision instruments, so that its purity and reaction process can be monitored. In addition, the vapor pressure of 2-isobutoxypyrazine also varies with temperature, and this property needs to be taken into account in storage and use scenarios to ensure safety and efficiency.
    Is 2-isobutoxypyrazine chemically stable?
    The stability of the chemical properties of 2-isobutoxypyrazine depends on multiple factors. The structure of this compound contains a pyrazine ring and an isobutoxy group, which interact with each other to affect its stability in many chemical situations.
    The pyrazine ring has a conjugated system, which makes it stable under normal conditions. The electrons in the conjugated system are delocalized, which decreases the molecular energy and stabilizes the structure. However, it is not absolutely stable. If it encounters a strong oxidizing agent, strong acid or strong base environment, the conjugated system may be damaged, resulting in changes in its chemical properties.
    The isobutoxy group is attached to the pyrazine ring, which brings specific electronic and spatial effects to the molecule. The inductive effect of the electrons may affect the distribution of electron clouds on the pyrazine ring, which in turn affects its reactivity. And its steric hindrance, in some reactions, may hinder the reactants from getting close to the pyrazine ring, affects the reaction rate and path, and to a certain extent affects the stability.
    Under common temperature and pressure conditions, without the action of active reagents or special conditions, the chemical properties of 2-isobutoxy pyrazine are still stable, and its structure and properties can be maintained for a certain period of time. However, extreme conditions such as high temperature, high humidity or strong light irradiation, or the intensification of chemical bond vibrations and electron transitions in the molecule, cause the molecular structure to change and the chemical properties to change accordingly.
    In summary, the chemical stability of 2-isobutoxypyrazine is non-absolute and immutable. It is influenced by various factors such as its structure, external environment, and chemical reagents encountered. Under different circumstances, it presents different stability situations.
    What are the precautions for the production of 2-isobutoxypyrazine?
    During the production of 2-isobutoxypyrazine, many things need to be paid attention to. Safety is the top priority. 2-isobutoxypyrazine may be toxic and irritating. When operating, make sure that the operator wears complete protective equipment, such as gas masks, protective gloves, protective glasses, etc., to prevent it from coming into contact with the human body or inhaling through the respiratory tract, causing damage to the body.
    The second time is related to the precise control of the reaction conditions. The reaction of synthesizing 2-isobutoxypyrazine requires strict conditions such as temperature, pressure, reactant ratio and reaction time. If the temperature is too high or too low, the reaction rate can be abnormal, or by-products can be formed; improper pressure can also affect the reaction process; the ratio of reactants is unbalanced, and it is difficult to achieve the ideal yield; the reaction time is not controlled properly, or the reaction is incomplete or excessive. Therefore, it is necessary to use precision instruments and equipment to strictly monitor and regulate the reaction conditions in order to achieve the best reaction state.
    Furthermore, the quality detection of raw materials and products is indispensable. The purity of raw materials has a profound impact on the reaction. Excessive impurities can easily lead to side reactions and reduce the quality of the product. The product also needs to be strictly tested to ensure that its purity, content and other indicators meet the standards. This can be accurately determined by high performance liquid chromatography, gas chromatography, mass spectrometry and other analytical methods.
    In addition, the environmental protection problem of the production process should not be underestimated. 2-Isobutoxypyrazine produces or produces wastewater, waste gas, waste residue and other pollutants, which must be properly treated in accordance with environmental regulations. After the waste gas is purified to meet the standards, the waste water is treated to meet the discharge standards, and the waste residue is reasonably disposed of to reduce the harm to the environment.
    Equipment maintenance is also key. The equipment used in production is regularly inspected, maintained and cleaned to ensure its normal operation. Equipment failure or uncontrolled reaction affects product quality and even causes safety accidents. Therefore, a sound Facility Management and Maintenance System should be established to ensure the smooth progress of production.
    What is the market outlook for 2-isobutoxypyrazine?
    2-Isobutoxypyrazine, which is used in the field of fragrances, has a promising future. It has a unique aroma and is very useful in the food, beverage, perfume and other industries.
    In the food industry, 2-isobutoxypyrazine can add a unique flavor. Nowadays, the world's pursuit of food flavor is increasing, and the demand for specialty flavor foods is increasing. For example, in baked goods, it can add different aroma levels and make products stand out. In the beverage field, it can innovate innovative flavors, bring unique taste experiences to consumers, and help manufacturers expand market share.
    In the perfume industry, unique aromas are also very popular. Fragrances often look for unique fragrance ingredients to create unique fragrances. 2-Isobutoxypyrazine can add a unique flavor to perfumes, and help products stand out and attract consumers' attention in the highly competitive perfume market.
    Furthermore, with the advancement of science and technology, fragrance extraction and synthesis technologies are becoming more and more mature. 2-Isobutoxypyrazine production efficiency is expected to improve, cost may be reduced, making it more widely used. And consumers' demand for natural, high-quality fragrances is increasing. If it can be produced in a green and efficient way to meet market demand, the market prospect will be broader.
    However, market competition cannot be ignored. Many fragrance companies may compete to develop similar products. To gain a market advantage, companies need to make great efforts in quality control and innovative applications in order to gain a share of the 2-isobutoxypyrazine market and enjoy the dividends brought by its broad prospects.