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This product What is the chemical structure of Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]
This compound is called 2,2 '- (E) -ethylene-1,2-diyl bis [5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate]. To know its chemical structure, let me tell you in detail.
In this compound, the core is (E) -ethylene-1,2-diyl, which is like a beam and pillar, supporting the entire structure. Ethylene bis-carbon, each connected with a side chain. In the side chain, the benzenesulfonate group is particularly important. Above the benzene ring, the sodium sulfonate group gives the compound certain water solubility and ionic properties. More importantly, the 5th position of the benzene ring is connected with 4-phenyl-2H-1,2,3-triazole-2-group. This triazole group has a special conjugated structure, which adds unique chemical activity and stability to the compound. Phenyl is connected to the 4th position of the triazole, which introduces aromatic properties to the structure and affects the physical and chemical properties of the compound.
This compound has a complex and delicate structure, and the interaction of each group jointly determines its unique properties and potential applications in chemical reactions, materials science or biomedicine.
Product Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] What are the main uses
This is a chemical substance called bis (2- (5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate) vinyl) disodium salt. It has a wide range of uses and plays an important role in many fields.
First, in the field of materials science, this substance can be used as a key component of special functional materials. Due to its unique chemical structure, it endows materials with properties such as excellent optical properties and good stability, which can improve the quality and performance of materials and is used in the manufacture of high-end optical materials, electronic devices, etc.
Second, in the field of biomedicine, or can be used for drug development. Due to its structural characteristics, or the ability to interact with biomolecules, it can become a carrier for targeted drugs, or as a lead compound with specific biological activities, it can help the creation of new drugs and provide new possibilities for disease treatment.
Third, in the field of catalysis, the substance may exhibit catalytic activity. Its unique structure can provide a specific activity check point for the reaction, promote the progress of specific chemical reactions, improve reaction efficiency and selectivity, and has potential application value in organic synthesis and other fields.
Fourth, in the field of analysis and detection, with its special structure and properties, or can be used as an identifying molecule for the detection and analysis of specific substances. In combination with the specificity of the target substance, sensitive detection of the target substance is achieved through a certain detection method, which helps in environmental monitoring, food safety testing, and other work.
How is the solubility of the product Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]
This substance is called bis (2,2 '- (E) -ethylene-1,2-diylbis (5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate). To know its solubility, let me tell you in detail.
Generally speaking, the solubility of a substance is affected by a variety of factors. The structure of this compound contains phenyl ring, triazole group and sulfonic acid group. The phenyl ring and triazole group are hydrophobic to a certain extent, because they are non-polar parts, they have poor affinity for water. However, the sulfonic acid group can be ionized and hydrophilic, and can form ion-dipole interactions with water molecules, thereby helping the substance to dissolve in water.
If placed in water, the substance may exhibit a certain water solubility due to the ionization of the sulfonic acid group. However, the hydrophobicity of benzene ring and triazolyl may limit its solubility, making it difficult to dissolve at very high concentrations.
In organic solvents, it exhibits good solubility due to the presence of hydrophobic groups, or in some non-polar or weakly polar organic solvents, such as toluene and dichloromethane. However, the specific solubility needs to be accurately determined by experiments. Many experimental conditions such as temperature, solvent purity, solute to solvent ratio, etc., will affect its solubility. According to structural analysis alone, it can be speculated that its solubility in water and organic solvents may show a complex situation, which needs to be further determined by experiments.
How is the stability of the product Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate]?
This substance is called 2,2 '- (E) -ethylene-1,2-diyl bis [5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate], and its stability needs to be observed from many aspects.
To observe its chemical structure, it contains triazole and benzenesulfonate radical group. The triazole ring has a conjugated structure and has certain stability. Because of its electron cloud delocalization, it can disperse energy and stabilize the molecular system. In the benzenesulfonate radical group, the sulfonic acid group is conjugated with the benzene ring, which also enhances the structural stability, and the sulfonic acid sodium salt form has good solubility in water, and the ionization state is stable in the aqueous phase.
In terms of chemical bond energy, intra-molecular carbon-carbon, carbon-nitrogen and other chemical bonds have high energies and require more energy to break, so they are not easy to decompose under normal conditions. However, under extreme conditions such as high temperature, strong acid or strong base, the stability may be affected. At high temperatures, the thermal motion of molecules intensifies. When the energy reaches the threshold of chemical bond energy, the bonds are easy to break and cause structural damage. In strong acid or strong base environments, groups may undergo protonation and deprotonation reactions, which change the molecular charge distribution and electron cloud structure, thereby affecting the stability.
Light is also an influential factor. Although there are no particularly light-sensitive groups in the structure of this substance, long-term strong light irradiation or luminescent chemical reactions can change the molecular structure.
Overall, 2,2 '- (E) -ethylene-1,2-diyl bis [5- (4-phenyl-2H-1,2,3-triazole-2-yl) sodium benzenesulfonate] has good stability under normal temperature, neutral aqueous phase and dark conditions; but under extreme physical and chemical conditions, the stability may change.
Product Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] What is the production process
To prepare this substance, several steps are required. First, when taking benzene sulfonic acid or the like, add an appropriate agent to make it co-react with materials containing phenyl triazole. This step requires careful control of temperature and humidity, material ratio and reaction time, so that the two can be combined to form an intermediate containing sulfonic acid base and triazole.
Second, take another genus of ethylene and activate it in a suitable way. Here, either by the force of a catalyst or by adjusting the reaction environment, ethylene has better reactivity.
Then, the first-obtained intermediate meets the activated ethylene. The key to this reaction is to choose precise reaction conditions, such as selecting a suitable solvent and controlling the temperature in a specific domain, so as to help the two form an alkenyl-linked structure, and then obtain the prototype of the target molecule.
However, at this time, the product may be mixed with impurities, so it still needs to be refined. The method of recrystallization can be used to select a suitable solvent, so that the product can be crystallized out of it, and its impurities can be removed. Chromatography can also be used to separate the product by adsorption and elution. After these steps and strictly observing the requirements of each step, a pure Disodium 2,2 '- (E) -Ethene-1,2-Diylbis [5- (4-Phenyl-2H-1,2,3-Triazol-2-Yl) Benzenesulfonate] can be obtained.