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1H-Indole-1-Propanesulfonic Acid, 2,3-Dihydro-2-[2-(3-Hydroxy-6-Oxo-2,4-Cyclohexadien-1-Ylidene)Ethylidene]-3,3-Dimethyl-

Lingxian Chemical

Specifications

HS Code

567936

Chemical Formula C19H21NO5S
Molecular Weight 375.44 g/mol
Appearance Typically a solid, color description might vary based on purity
Solubility Solubility characteristics would depend on the solvent, may have limited solubility in non - polar solvents
Melting Point Specific melting point data would require experimental determination
Pka Acidic nature can be related to its pKa value which would need experimental measurement
Stability Stability can be affected by factors like light, heat, and air exposure
Reactivity Can participate in reactions related to its functional groups such as the indole, sulfonic acid, and double - bond containing moieties
Odor Odor would need to be determined experimentally, likely odorless or with a faint characteristic smell
Packing & Storage
Packing 100g of 1H - Indole - 1 - Propanesulfonic Acid compound packaged in a sealed chemical - grade vial.
Storage Store “1H - Indole - 1 - Propanesulfonic Acid, 2,3 - Dihydro - 2 - [2 - (3 - Hydroxy - 6 - oxo - 2,4 - cyclohexadien - 1 - ylidene)ethylidene] - 3,3 - dimethyl -” in a cool, dry place away from heat and ignition sources. Keep in a tightly - sealed container to prevent moisture absorption and degradation. Store it separately from incompatible substances like oxidizing agents.
Shipping The chemical "1H - Indole - 1 - Propanesulfonic Acid, etc." is shipped using specialized packaging to prevent any chemical degradation or spill. It follows strict hazardous chemical shipping regulations to ensure safe transportation.
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1H-Indole-1-Propanesulfonic Acid, 2,3-Dihydro-2-[2-(3-Hydroxy-6-Oxo-2,4-Cyclohexadien-1-Ylidene)Ethylidene]-3,3-Dimethyl-
General Information
Historical Development
1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] - 3,3-dimethyl compounds, its historical development has been ancient. In the past, Fang family warlocks explored the change of physical properties in the tripod of Dan furnace, although they did not directly refer to this thing, but the basis of chemistry began here.
The years have passed, science has gradually flourished, and researchers have analyzed the differences and studied various chemical reactions. After countless trials and errors, I got the relevant clues of this thing. At first, the cognition was still shallow, and only a glimpse of it. After generations of relays, the instruments were refined, and the analysis was more detailed. From a rough understanding of its nature to a clear understanding of its molecular structure and reaction mechanism, the historical evolution of this compound is like a long scroll. Every step is condensed in the hardships and wisdom of scientific exploration, and finally presented in today's vision.
Product Overview
The compound "1H - Indole - 1 - Propanesulfonic Acid, 2,3 - Dihydro - 2 - [2 - (3 - Hydroxy - 6 - Oxo - 2,4 - Cyclohexadien - 1 - Ylidene) Ethylidene] - 3,3 - Dimethyl -" has a unique structure. This is obtained by exquisite synthesis and has potential for various uses.
Its indole ring coexists with a sulfonic acid group, or it exhibits special activity in a specific chemical reaction. The structural modification of 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl imparts different physical and chemical properties to the compound. Or as a key intermediate in the field of organic synthesis, it helps to build a more complex molecular structure; in materials science, or because of its special structure, it exhibits unique electrical and optical properties and is expected to be applied to new functional materials. In short, this compound has a unique structure and has broad research and application prospects.
Physical & Chemical Properties
1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl-This substance has the most critical physical and chemical properties. Looking at its morphology, or in a specific shape, the color is also characteristic. Its melting point, boiling point and other physical constants are indispensable for identification and application. In terms of chemical properties, the groups contained in its structure determine its chemical reactivity. Under certain conditions, it may be able to react with other substances such as substitution and addition. Its solubility may vary in different solvents, which is related to its dispersion and application in various systems. Knowing the physical and chemical properties of this substance is helpful to further explore its properties and lay the foundation for related research and application.
Technical Specifications & Labeling
There is now a product called 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2 - (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl -. For this product, process specifications and identification (product parameters) are also crucial.
In terms of its process specifications, it is necessary to carefully study the preparation method, and select the raw materials, which must be pure and free of impurities; to the reaction conditions, such as temperature, pressure, duration, etc., all need to be precisely controlled. If there is a slight difference, the product will be impure and difficult to meet. As for the identification (product parameters), when specifying its physical and chemical properties, such as appearance morphology, melting point, boiling point, solubility, etc., this is an important basis for identifying this product. And it is necessary to clarify the proportion of its ingredients and the geometry of its purity, so that this product can be used in various applications to show its full potential without error.
Preparation Method
1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl products should be prepared with various materials and production processes, reaction steps, and catalytic mechanisms.
Prepare its raw materials first, select the best quality, and meet the needs of the synthetic product. In the reaction step, according to the specific order, control the temperature and pressure to make each product just match. If the material touches, slowly stir and promote its fusion, observe its image, and proceed rationally.
The catalytic mechanism is also heavy, select the appropriate catalyst, adjust its performance, increase the speed of response, and increase the rate of production. With exquisite craftsmanship, this product is made, the materials are combined, the steps are in phase, the catalysis is appropriate, and the best product is obtained in the future, which is suitable for world use.
Chemical Reactions & Modifications
There is now a substance named 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl -. In the field of chemistry, its reaction and modification are extremely important.
Looking at this substance, its chemical structure is unique, and its reaction mechanism and modification methods need to be investigated in detail. Chemists should use a rigorous method to observe its changes under various conditions. After experiments and analysis, it can be known that its reaction characteristics, or under the action of specific reagents, the molecular structure changes, which has a great impact on its properties.
The process of modification aims to optimize its properties, or increase its stability, or change its activity. This all depends on the careful research of chemists to improve the properties of substances, so that they can be better applied in various fields of industry and scientific research.
Synonyms & Product Names
In modern times, there is a substance named 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl -. Although its name is complex, it is related to the beauty of chemistry. This substance may have another name, but it can also be said to be the same thing and different names. In the field of chemistry, it is common to have more than one thing. Due to differences in research angles and naming traditions. This 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl -, or in the chemical industry, scientific research has its use, or as a raw material for the reaction, or as a component of the preparation, to explore its synonyms, to help clarify its properties, uses, in the study of chemistry, it is really beneficial.
Safety & Operational Standards
Specification for the Safety and Operation of 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl
V 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene- 1-Subunit) ethylene-3,3-dimethyl, is an important substance in chemical research. If you want to make good use of this substance, you must first clarify its safety and operating norms.
Safety is the first thing to bear the brunt. This substance may have a certain chemical activity, and you must be cautious when contacting it. When operating, wear suitable protective clothing, such as lab clothes, gloves, etc., to prevent it from coming into direct contact with the skin. If you accidentally touch it, you should immediately rinse it with plenty of water and seek medical attention as appropriate. Its odor and volatiles may affect breathing, so the operation should be in a well-ventilated place, or with the help of ventilation equipment, to avoid inhalation hazards.
The operating norms should not be underestimated. When weighing, use a precise measuring tool and take the amount according to the experimental requirements. Do not make excessive or insufficient, resulting in experimental deviation. To dissolve this substance, a suitable solvent needs to be selected, operated in an appropriate proportion, and stirred evenly to promote its full dissolution. During the reaction process, strictly monitor temperature, time and other conditions, and the results may vary due to subtle differences. After the reaction, the product treatment also needs to be in compliance, or purified according to a specific process, or discarded according to environmental protection requirements, to ensure that the environment is not contaminated.
In short, in the research and application of 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2 - (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl, safety and operation specifications are as indispensable as the wings of a bird and the two wheels of a car. Only by strictly observing these two can the experiment be smooth and the purpose of research can be achieved.
Application Area
Today there is a product called "1H - Indole - 1 - Propanesulfonic Acid, 2,3 - Dihydro - 2 - [2 - (3 - Hydroxy - 6 - Oxo - 2,4 - Cyclohexadien - 1 - Ylidene) Ethylidene] - 3,3 - Dimethyl -". This product is useful in many fields.
In the field of medicine, or with its unique nature, it can be used to develop a cure for diseases and help heal diseases. In the chemical industry, it can be used as a special raw material to make exquisite products and add color to the industry. In scientific research and exploration, it can also be a key reagent to help solve scientific puzzles and open up the unknown.
Although its name is uncommon, its function cannot be underestimated. With time and in-depth investigation, it will be able to shine in the field used and benefit the world.
Research & Development
There is now a product named 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl. I am a chemical researcher, studying the development of this product.
This product has a specific structure and properties that are worth exploring. I dedicated myself to studying, analyzing its chemical composition, and exploring the reaction mechanism. After repeated experiments, I observed its changes under different conditions.
Hope to borrow research to clarify its characteristics and explore its uses. Or make a name for yourself in the field of materials, or contribute to drug research and development. Persistence, hope to make breakthroughs, promote its development, contribute to the academic community and industry, make this compound shine, and move forward steadily on the road of scientific research.
Toxicity Research
It is essential to study the toxicity of this 1H - Indole - 1 - Propanesulfonic Acid, 2,3 - Dihydro - 2 - [2 - (3 - Hydroxy - 6 - Oxo - 2,4 - Cyclohexadien - 1 - Ylidene) Ethylidene] - 3,3 - Dimethyl -. We study its properties, structures and reactions in detail to clarify its effects in vivo.
This compound has a unique structure or has special activities. After many experiments, its toxicity has been tested in various biological models. To observe its effects on cell growth and metabolism, and to observe its toxicity characterization in animals.
The road to toxicity research is full of thorns. However, we adhere to the scientific spirit and investigate cautiously. We hope to accurately determine the degree of toxicity, provide a solid basis for subsequent application and prevention, and make the use of this compound seek advantages and avoid disadvantages to ensure the well-being of all beings.
Future Prospects
The name is 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl. We are chemical researchers and look forward to the future development of this product.
Although this product may be at the stage of research at present, its potential should not be underestimated. In the future, it may be able to emerge in the field of medicine, adding new strength to the treatment of diseases and diseases; or in the world of materials, new materials will be introduced, and special things will be endowed.
Our generation should study diligently and explore its principles, so that this thing can be greatly developed in the future, for the well-being of the world, and to achieve unfinished business, living up to the prospect of the future.
Frequently Asked Questions
What is the main use of 1H-Indole-1-Propanesulfonic Acid, 2,3-Dihydro-2- [2- (3-Hydroxy-6-Oxo-2, 4-Cyclohexadien-1-Ylidene) Ethylidene] -3,3-Dimethyl-
1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl This substance has important uses in many fields.
In the field of medicinal chemistry, its unique molecular structure may provide an exquisite template for the creation of new drugs. Due to its specific structure, it may be precisely compatible with specific targets in the body, such as participating in the activity regulation of some key enzymes, or intervening in cell signaling pathways, and then exerting therapeutic efficacy on specific diseases, such as assisting the development of anti-cancer drugs, by interfering with the abnormal signaling of cancer cells, inhibiting their proliferation and diffusion.
In the field of materials science, this substance may exhibit extraordinary characteristics. Or its structure endows materials with unique physical and chemical properties, such as improving the optical properties of materials, making materials stand out in the field of photoluminescence, used as new luminescent materials, contributing to the development of display technology; or enhancing the stability and durability of materials, applied to the preparation of high-end materials, improving material quality and service life.
In the field of organic synthesis, it can be used as a crucial intermediate. With its complex and delicate structure, a series of rich compounds can be derived through diverse organic reactions, greatly expanding the boundaries of organic synthesis, providing the possibility to create organic molecules with special functions, and helping scientists build more complex and unique organic systems.
1H-Indole-1-Propanesulfonic What are the physical properties of Acid, 2,3-Dihydro-2- [2- (3-Hydroxy-6-Oxo-2, 4-Cyclohexadien-1-Ylidene) Ethylidene] -3,3-Dimethyl-
1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] - 3,3-dimethyl, the physical properties of this substance are as follows:
Its appearance may be solid, or it may be crystalline due to specific conditions. The color is either colorless and transparent, or has a slight color, but the exact color depends on its purity and preparation process.
In terms of melting point, there is no exact literature available. It is speculated that its melting point is in a specific temperature range, which is closely related to the chemical bond energy and intermolecular forces inside the molecule. Various atoms in the molecule are connected by covalent bonds to form a stable structure, while the intermolecular forces maintain the aggregation state of the molecule, and the two together affect the melting point.
In terms of solubility, because its molecular structure contains sulfonic acid groups, which are hydrophilic groups, it may have certain solubility in polar solvents such as water and alcohols. However, the molecule also contains aromatic rings and alkyl groups and other hydrophobic groups, resulting in poor solubility in non-polar solvents such as alkanes and aromatics.
In terms of density, although there is no precise data, it can be inferred from its structure that the density may be equivalent to that of compounds with similar structures. Molecules are composed of atoms such as carbon, hydrogen, oxygen, and sulfur, and the relative atomic masses and spatial arrangement of atoms determine their density characteristics.
The refractive index is also affected by the molecular structure. The conjugate system of molecules and the distribution of electron clouds of atoms all have an effect on the propagation of light, which in turn affects the refractive index value.
The above inferences on their physical properties are based on chemical principles and similar compound properties. The exact properties still need to be accurately determined experimentally.
1H-Indole-1-Propanesulfonic What is the chemical synthesis method of Acid, 2,3-Dihydro-2- [2- (3-Hydroxy-6-Oxo-2, 4-Cyclohexadien-1-Ylidene) Ethylidene] -3,3-Dimethyl-
To prepare 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl, the method is as follows:
First take an appropriate starting material and dissolve it in an organic solvent to ensure uniformity. Then add an appropriate amount of catalyst, the amount of which needs to be precisely controlled, which affects the rate and yield of the reaction. Heat up to a specific temperature. The choice of this temperature depends on the reaction characteristics and the properties of the raw materials, and often requires fine debugging. During the reaction process, close monitoring is required to observe the changes in the reaction process, which can be observed by means of spectroscopy.
When the reaction is approaching the expected degree, cooling slows down the reaction. Then appropriate separation methods, such as extraction, distillation, recrystallization, etc., are used to precipitate the product from the reaction system. During this period, attention should be paid to the details of the operation of each step to avoid product loss or contamination by impurities. After repeated purification, the pure 1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2 - (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl products can be obtained. However, the reaction conditions and specific operations, or depending on the actual situation, must be flexibly adjusted according to the experimental experience.
1H-Indole-1-Propanesulfonic Acid, 2,3-Dihydro-2- [2- (3-Hydroxy-6-Oxo-2, 4-Cyclohexadien-1-Ylidene) Ethylidene] -3,3-Dimethyl - What is the price range in the market?
I look at your question, but I am inquiring about the price range of "1H-indole-1-propanesulfonic acid, 2,3-dihydro-2 - [2 - (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl" in the market. However, the price of this chemical product varies depending on the quality, source, quantity, and market conditions at the time of purchase.
If purchased from a normal chemical reagent supplier, the price of a small sample may be slightly higher. The quality is average, if the quantity is about a few grams, the price per gram may be around tens to hundreds of yuan. If the quantity increases, it reaches a hundred grams or even a kilogram level, and the unit price may drop due to the scale effect, or to a few to tens of yuan per gram.
However, if you want high quality, such as high purity for precision scientific research and pharmaceutical research and development, the price will be high. Those with extremely high purity may reach hundreds of yuan per gram, or even higher.
And due to fluctuations in market conditions, changes in the price of raw materials and the state of supply and demand all affect their prices. Therefore, if you want to know the exact price, you need to consult various suppliers in detail to obtain an accurate number.
1H-Indole-1-Propanesulfonic Acid, 2,3-Dihydro-2- [2- (3-Hydroxy-6-Oxo-2, 4-Cyclohexadien-1-Ylidene) Ethylidene] -3,3-Dimethyl-What are the precautions during use
1H-indole-1-propanesulfonic acid, 2,3-dihydro-2- [2- (3-hydroxy-6-oxo-2,4-cyclohexadiene-1-subunit) ethylene] -3,3-dimethyl This product, in the process of use, need to pay attention to many matters.
First, this product has special properties, which is related to the complexity of its chemical structure, the interaction of various groups contained in it, or show different reaction characteristics in different environments. Therefore, when using, it is necessary to know its chemical properties in detail, and understand the reactions of common reagents and environmental factors in order to properly control and avoid accidents.
Second, temperature has a significant impact on it. Changes in temperature, or changes in its physical state, can even cause changes in the rate and direction of chemical reactions. If the temperature is too high, it may cause reactions such as decomposition and polymerization, which will damage its effectiveness; if the temperature is too low, it may cause the reaction to stagnate and reduce its activity. During operation, when the temperature is precisely controlled according to the needs, the heating and cooling devices are selected, and the temperature changes are closely monitored.
Third, the humidity should not be underestimated. This material may be hygroscopic. After absorbing moisture, its purity and stability may be changed, which will affect the use effect. When storing and using, a dry environment should be selected, or a desiccant should be used to avoid moisture.
Fourth, the ventilation conditions of the use environment are very critical. If this material volatilizes to produce harmful gases, or reacts to generate bad gases, the ventilation is not smooth, which will cause gas accumulation, endanger the user's health, and even cause safety accidents. The operation should be carried out in a fume hood to ensure good ventilation.
Fifth, the use process must strictly follow the operating procedures. From weighing, dissolving, mixing and other steps, do not be sloppy. Use appropriate instruments and standardize the operation methods to ensure accurate results, and at the same time avoid material loss due to improper operation, experimental failure, or safety problems.