1 1 2 2 3 3 4 4 4 Nonafluoro N Methylbutane 1 Sulfonamide
Fluorine Difluoride Fluorobenzene Fluorobenzyl Trifluorotoluene
1,1,2,2,3,3,4,4,4-nonafluoro-N-methylbutane-1-sulfonamide
Chemical Formula C5H6F9NO2S
Appearance Typically a colorless to light - colored liquid or solid (state depends on conditions)
Boiling Point Data may vary, but generally in a certain temperature range related to its molecular structure
Melting Point Characteristic melting temperature based on its crystal lattice
Solubility Solubility characteristics in common solvents like water, organic solvents vary
Density A specific mass - to - volume ratio
Vapor Pressure Indication of its volatility at a given temperature
Flash Point Temperature at which it can form an ignitable vapor - air mixture
Stability Stability under different environmental conditions such as heat, light, air
Chemical Formula C5H4F9NO2S
Molar Mass 319.14 g/mol
Appearance Typically a colorless to pale - yellow liquid (general for such sulfonamides)
Density No standard density value found in general literature, but related fluorinated sulfonamides have specific gravities
Solubility Soluble in polar organic solvents like acetone, less soluble in non - polar solvents like hexane
Vapor Pressure Low vapor pressure due to relatively high molecular weight and intermolecular interactions
Chemical Formula C5H4F9NO2S
Molar Mass 309.14 g/mol
Appearance Typically a colorless to pale - yellow liquid
Boiling Point Approximately 162 - 164 °C
Density Around 1.6 - 1.7 g/cm³
Solubility In Water Poorly soluble
Solubility In Organic Solvents Soluble in common organic solvents like dichloromethane, chloroform
Vapor Pressure Relatively low at room temperature
Chemical Formula C5H6F9NO2S
Molar Mass 329.16 g/mol
Appearance Typically a colorless to light - colored liquid or solid
Boiling Point Data may vary, but generally in a specific range related to its molecular structure
Melting Point Dependent on the purity and crystal structure, has a characteristic value
Density A specific density value related to its mass - volume relationship
Solubility Solubility characteristics in various solvents like water, organic solvents
Vapor Pressure A measure of its tendency to vaporize at a given temperature
Flash Point Indicator of its flammability in terms of temperature for vapor ignition
Stability Thermal, chemical stability under different conditions
FAQ

What is the chemical structure of 1,1,2,2,3,3,4,4,4-nonafluoro-N-methylbutane-1-sulfonamide?

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What are the physical properties of 1,1,2,2,3,3,4,4,4-nonafluoro-N-methylbutane-1-sulfonamide?

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What are the main uses of 1,1,2,2,3,3,4,4,4-nonafluoro-N-methylbutane-1-sulfonamide?

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This medicine can be used for livestock and poultry, and plays a role in the production of herbivores in agricultural production. In ancient farming society, livestock and poultry breeding was an important industry, and this medicine can help the healthy growth of herbivorous livestock and poultry. For herbivorous cattle, sheep and other livestock, it can effectively deal with some health problems, improve their physique, and then increase the output of meat, milk and other livestock products, and ensure the stable development of animal husbandry in agricultural production. And the ingredients in this medicine can regulate the physiological functions of herbivorous livestock and poultry, help them better digest grass, absorb nutrients, and improve the utilization rate of grass, so that under the same grass supply, livestock and poultry can have a better growth state, ultimately bringing more benefits to farmers and maintaining the stability and prosperity of the livestock sector in agricultural production.

What are the preparation methods of 1,1,2,2,3,3,4,4,4-nonafluoro-N-methylbutane-1-sulfonamide?

To make 1%2C1%2C2%2C2%2C3%2C3%2C4%2C4%2C4-nine-water-N-methylacetamide-1-indigo medicine, the method is as follows:

First, all kinds of raw materials need to be prepared. Find an appropriate amount of 1%2C1%2C2%2C2%2C3%2C3%2C4%2C4%2C4-nine-water-N-methylacetamide, which should be in a pure state with no impurities, so as to ensure excellent drug effect. It is also necessary to prepare an agent that can show indigo color, or a special pigment, or a chemical substance with this effect, and its properties should be compatible with the main agent before it can work synergistically.

Secondly, in the clean vessel, with precise measurement, pour 1%2C1%2C2%2C2%2C3%2C3%2C4%2C4%2C4-nine-water-N-methylacetamide in the appropriate amount. This amount must be in accordance with the regulations of the prescription, and there must be no error at all, otherwise the efficacy of the medicine will change. Next, slowly add the indigo agent. When adding, when slowly pouring in, gently stir with a clean rod to make the two blend evenly. When stirring, use moderate force, not too much, so as not to damage the properties of the medicine.

Furthermore, observe the blending state of the medicine, and wait until its color is uniform, it is the color of indigo and there are no impurities suspended, and the texture is uniform. After it is made, it should be stored properly, and a cool and dry place should be selected to avoid direct sunlight to prevent its deterioration.

In this way, the medicine of 1%2C1%2C2%2C2%2C3%2C3%2C4%2C4%2C4-nine-water-N-methylacetamide-1-indigo can be obtained. When making medicine, be sure to strictly abide by the procedures, and do not dredge at all to get good medicine.

What are the precautions for using 1,1,2,2,3,3,4,4,4-nonafluoro-N-methylbutane-1-sulfonamide?

1%2C1%2C2%2C2%2C3%2C3%2C4%2C4%2C4-%E4%B9%9D%E6%B0%9F-N-%E7%94%B2%E5%9F%BA%E4%B8%81%E7%83%B7-1-%E7%A3%BA%E9%85%B0%E8%83%BA is a complex chemical substance, and there are many things to pay attention to during use.

First, safety protection is of paramount importance. This substance may be toxic and corrosive to a certain extent. Be sure to wear professional protective equipment during operation, such as protective clothing, gloves, goggles, etc., to prevent contact with the skin and eyes, and avoid inhaling its volatile gases, otherwise it will cause serious damage to the human body.

Second, precisely control the dosage. Due to its special chemical properties, the dosage has a great impact on the reaction results. According to the specific reaction requirements and experimental purposes, the dosage needs to be strictly controlled with the help of precise measurement tools to ensure that the reaction proceeds in the expected direction and prevent adverse consequences due to improper dosage.

Third, pay attention to storage conditions. It should be stored in a dry, cool and well-ventilated place, away from fire sources, heat sources and oxidants. Improper storage conditions may cause it to deteriorate or cause safety accidents. Such as humid environment or deliquescence, which affects chemical properties.

Fourth, know its chemical reaction characteristics. Before use, it is necessary to fully understand the reaction laws and characteristics of the substance with other substances to prevent accidents during mixing or reaction, such as violent reactions, explosions and other dangerous situations.

Fifth, the operating environment should be suitable. Ensure that the operating space is well ventilated to discharge harmful gases that may be generated. At the same time, the operating table should be clean and dry to avoid impurities from mixing and affecting the properties of the substance.

Sixth, follow the correct operation procedures. No matter whether it is for use, mixing or subsequent processing, it is necessary to strictly follow the established specifications and procedures, and must not change or simplify the steps at will to ensure the safety and smooth progress of the experimental or production process.