As a leading Disodium (8Z)-7-Oxo-8-{2-[4-(1-{4-[2-(4-Oxocyclohexa-2,5-Dien-1-Ylidene)Hydrazinyl]Phenyl}Cyclohexyl)Phenyl]Hydrazinylidene}-7,8-Dihydronaphthalene-1,3-Disulfonate 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 chemical structure of this product (Disodium (8Z) -7-Oxo-8- {2- [4- (1- {4- [2- (4-Oxocyclohexa-2,5-Dien-1-Ylidene) Hydrazinyl] Phenyl} Cyclohexyl) Phenyl] Hydrazinylidene} -7,3-Disulfonate)?
The chemical structure of this compound ((8Z) -7-oxo-8- {2- [4- (1- {4- [2- (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazinyl] phenyl} cyclohexyl) phenyl] hydrazinyl} -7,8-dihydronaphthalene-1,3-disulfonate disodium) is extremely complex and delicate. Its core structure is a naphthalene ring, which is added with special substituents at the 7th and 8th positions of the naphthalene ring through specific reactions.
At the 8th position, a large aryl system is connected by hydrazinyl. In this aryl system, there is a bisphenyl structure bridged by cyclohexyl. Among them, on one phenyl group, 4 positions are connected with a hydrazine group containing 4-oxo-cyclohexyl-2,5-diene-1-subunit. The 1 and 3 positions of the naphthalene ring are each connected with a sulfonic acid group and exist in the form of sodium salts. The 7 position is an oxo group. This oxo group and the 8-position substituent together shape a unique conjugate structure, giving the compound unique physical and chemical properties. Such a complex structure is like a treasure carefully carved by ancient craftsmen. The parts cooperate with each other to give the compound specific activity and function, and may have extraordinary uses in the fields of chemistry and biology.
Disodium (8Z) -7-Oxo-8- {2- [4- (1- {4- [2- (4-Oxocyclohexa-2,5-Dien-1-Ylidene) Hydrazinyl] Phenyl} Cyclohexyl) Phenyl] Hydrazinylidene} -7,8-Dihydronaphthalene-1, What are the main application fields of 3-Disulfonate products?
This is a rather complex chemical called disodium (8Z) -7-oxo-8- {2- [4- (1- {4- [2- (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazinyl] phenyl} cyclohexyl) phenyl] hydrazidine} -7,8-dihydronaphthalene-1,3-disulfonate. Its main application fields are extremely wide.
In the field of medicine, this substance may have unique pharmacological activity. Or it can interact with specific biological targets in the body due to its special chemical structure. Or it can participate in the regulation of cellular metabolic processes, showing potential efficacy in the treatment of certain diseases. For example, in the study of specific cancer cells, its structural properties may help it precisely act on key proteins of cancer cells, thereby inhibiting the growth and spread of cancer cells, providing new ideas and directions for the research and development of anti-cancer drugs.
In the field of materials science, because it contains special functional groups and structures, it may endow materials with unique properties. For example, in the modification of polymer materials, adding this substance may enhance the stability and oxidation resistance of materials. It may enable materials to maintain good physical and chemical properties in extreme environments, thereby expanding the application scenarios of materials, such as the preparation of special materials used in the aerospace field, and improving the durability and functionality of materials.
In chemical production, it may act as a special catalyst or reaction intermediate. Its unique chemical activity may accelerate the process of specific chemical reactions, improve the selectivity and yield of the reaction. In the synthesis of fine chemical products, it can help synthesize more complex compounds with specific functions, optimize the process of chemical production, and improve the quality and production efficiency of chemical products.
Disodium (8Z) -7-Oxo-8- {2- [4- (1- {4- [2- (4-Oxocyclohexa-2,5-Dien-1-Ylidene) Hydrazinyl] Phenyl} Cyclohexyl) Phenyl] Hydrazinylidene} -7, 8-Dihydronaphthalene-1, What are the production methods of 3-Disulfonate?
This is the method of preparing (8Z) -7-oxo-8- {2 - [4- (1 - {4 - [2 - (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazinyl] phenyl} cyclohexyl) phenyl] hydrazinyl} -7,8 -dihydronaphthalene-1,3 -disodium disulfonate, which involves many delicate ways, and let me know one by one.
First, it can be obtained from the starting material through a multi-step organic synthesis reaction. First find a suitable naphthalene compound, and introduce a sulfonic acid group into its 1,3-position, which can be achieved by a sulfonation reaction. Select concentrated sulfuric acid or fuming sulfuric acid as the sulfonation reagent. Under a suitable temperature and reaction time, the sulfonic acid group is precisely connected to the 1,3-position of the naphthalene ring to generate the corresponding naphthalene-1,3-disulfonic acid derivative.
Then, the 7-position is modified to convert it into an oxo structure. This step may require an oxidation reaction. For example, under a suitable oxidizing agent, a specific group at the 7-position is oxidized to a carbonyl group, and then a 7-oxo-naphthalene-1,3-disulfonic acid derivative is obtained.
As for the construction of 8-bit complex substituents, it needs to be introduced step by step. First synthesize the intermediate product containing cyclohexyl and phenyl. Through multi-step reaction, introduce 4- [2- (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazine] structure at a specific position in the benzene ring, and then this intermediate product is reacted with 7-oxo-naphthalene-1,3-disulfonic acid derivatives. After condensation and other reactions, the complex substituent is connected at 8-position. Finally, it is reacted into a salt and combined with sodium ions to form the target product (8Z) -7-oxo-8 - {2 - [4 - (1 - {4 - [2- (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazino] phenyl} cyclohexyl) phenyl] hydrazinoxy} -7,8-dihydronaphthalene-1,3-disulfonate disodium.
Second, or reverse synthesis can be used to start from the target product, analyze its structure and disassemble it into multiple simple fragments. According to the structural characteristics of each fragment, synthesize it separately, and then splice the fragments together by organic reaction. For example, first synthesize the fragment containing naphthalene ring and sulfonic acid group, the fragment containing cyclohexyl group and phenyl group and hydrazine group, then use suitable reaction conditions and reagents to connect these fragments one by one, and finally go through the salt-forming step to obtain this target product.
Preparation of (8Z) -7-oxo-8- {2 - [4 - (1 - {4 - [2 - (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazinyl] phenyl} cyclohexyl) phenyl] hydrazinyl} -7,8-dihydronaphthalene-1,3-disulfonate disodium method, although there are various paths, but all need to carefully control the reaction conditions, select appropriate reagents and intermediates in order to efficiently and accurately synthesize the target product.
Disodium (8Z) -7-Oxo-8- {2- [4- (1- {4- [2- (4-Oxocyclohexa-2,5-Dien-1-Ylidene) Hydrazinyl] Phenyl} Cyclohexyl) Phenyl] Hydrazinylidene} -7,3-Disulfonate What is the market outlook?
In today's world, there is a thing called disodium (8Z) -7-oxo-8- {2 - [4 - (1 - {4 - [2 - (4-oxo-cyclohexene-2,5-diene-1-subunit) hydrazinyl] phenyl} cyclohexyl) phenyl] hydrazinidine} -7,8-dihydronaphthalene-1,3-disulfonate. The prospect of this product in the market is really what everyone is looking forward to.
Today's field of pharmaceutical chemistry is developing rapidly and changing with each passing day. Due to its unique molecular structure, this compound may emerge in the research and development of new drugs. Due to the needs of medicine, precise and efficient active ingredients are often sought, and the structure of this compound is complex and delicate, or it can fit specific biological targets, so it has potential value in the treatment of difficult diseases. If properly developed, it may become a sharp blade to overcome chronic diseases and save patients from pain.
In the field of materials science, the market is increasingly demanding high-performance, multi-functional materials. The properties of this compound may make it useful for the preparation of some special materials. For example, in the field of optical materials, its unique conjugated structure may endow materials with excellent optical properties, such as fluorescence and light absorption, providing new opportunities for the innovation of optoelectronic devices.
However, its market prospects are not entirely smooth. The high cost of research and development and the high technical threshold are all obstacles to progress. To bring it to the market requires a lot of manpower, material and financial resources, and the research and development process may encounter many unknown problems. However, considering the general trend of scientific development, although the road is bumpy, if we can maintain perseverance and have the courage to explore and innovate, with time, disodium (8Z) -7-oxo-8- {2- [4- (1- {4- [2- (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazine] phenyl} cyclohexyl) phenyl] hydrazinido} -7,8-dihydronaphthalene-1,3-disulfonate will be able to bloom in the market and make outstanding contributions to the well-being of mankind.
Disodium (8Z) -7-Oxo-8- {2- [4- (1- {4- [2- (4-Oxocyclohexa-2,5-Dien-1-Ylidene) Hydrazinyl] Phenyl} Cyclohexyl) Phenyl] Hydrazinylidene} -7, 8-Dihydronaphthalene-1, 3-Disulfonate What should be paid attention to when using?
This is called disodium (8Z) -7-oxo-8- {2- [4- (1- {4- [2- (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazinyl] phenyl} cyclohexyl) phenyl] hydrazinyl} -7,8 -dihydronaphthalene-1,3 -disulfonate. When using, pay attention to many things.
Be the first to bear the brunt and read its instructions carefully. This is the key to understanding its properties, usage, dosage and contraindications. Just like a boat needs to know the water situation, the pharmacology of medication must be clear. This substance may have unique chemical properties and reaction characteristics, and it can be used without knowing it, and it may cause unexpected changes.
Furthermore, proper storage is extremely important. It is necessary to choose a suitable environment according to its characteristics. Or it needs to be protected from light and cool, or it needs to be moisture-proof and heat-proof. If it is not stored properly, its properties may change, its efficacy may be lost, and even harmful things may be produced.
During use, precise control of the dosage is of paramount importance. Too little will not achieve the expected effect, and too much or cause adverse reactions. Just like cooking and seasoning, more will taste heavy, and less will taste weak.
Also pay attention to its interaction with other things. Or repel with certain substances, mix or cause adverse chemical reactions. When using medicine, also check whether it conflicts with the medicine used.
Furthermore, the person using it should have the corresponding knowledge and skills. Non-professionals should not use it. If you use a sharp blade, you will easily hurt yourself without skilled skills.
In short, with this disodium (8Z) -7-oxo-8- {2- [4- (1- {4- [2- (4-oxo-cyclohexyl-2,5-diene-1-subunit) hydrazinyl] phenyl} cyclohexyl) phenyl] hydrazinyl} -7,8 -dihydronaphthalene-1,3 -disulfonate, we must be careful and follow its rules to ensure safety and achieve the intended purpose.