Products

8-Hydroxy-1,3,6-Pyrenetrisulfonic Acid Trisodium Salt

Lingxian Chemical

Specifications

HS Code

949202

Chemical Formula C16H7Na3O10S3
Molar Mass 534.39 g/mol
Appearance Solid
Solubility In Water Soluble
Ph Aqueous Solution Approx. 7 - 9
Cas Number 52409-21-9
Absorption Maximum Around 488 nm
Emission Maximum Around 520 nm
Purity Typically high purity, e.g., ≥95%
Stability Stable under normal conditions
Packing & Storage
Packing 100 - gram pack of 8 - Hydroxy - 1,3,6 - Pyrenetrisulfonic Acid Trisodium Salt.
Storage Store 8 - Hydroxy - 1,3,6 - Pyrenetrisulfonic Acid Trisodium Salt in a cool, dry place. Keep it away from heat sources and direct sunlight, as elevated temperatures and light can potentially cause degradation. Store in a well - sealed container to prevent exposure to moisture, which could affect its chemical stability. Follow proper safety protocols in a designated chemical storage area.
Shipping 8 - Hydroxy - 1,3,6 - Pyrenetrisulfonic Acid Trisodium Salt is shipped with strict adherence to chemical safety regulations. Packed securely in suitable containers, it ensures safe transit to prevent spillage during transport.
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8-Hydroxy-1,3,6-Pyrenetrisulfonic Acid Trisodium Salt
General Information
Historical Development
8-Hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt, the development of this substance has a long history. In the past, science and technology were not yet developed, and the exploration of substances was still shallow. However, with the passage of time, all kinds of skills have improved.
At first, only a little bit of its characteristics were known, and it was difficult to see the whole picture. After several generations of researchers worked tirelessly, it gradually became clear that its structure was exquisite. Advanced researchers studied day and night, using simple tools to explore its physical and chemical properties.
In recent times, analytical methods have become more and more complete, and spectroscopy and mass spectrometry have helped to deepen their understanding. The synthesis method has also been continuously improved, from crude to delicate, and the yield and quality have soared. Synthesis was difficult in the past, but it can be prepared stably today. In this way, 8-hydroxy-1,3,6-pyrene trisulfonate trisodium salt has emerged in various fields and has a bright future.
Product Overview
The trisodium salt of 8-hydroxy-1,3,6-pyrene trisulfonic acid is a chemical product that I have dedicated myself to researching. Its color is pure and the shape is like a fine powder, which is quite effective in many fields.
Looking at its properties, this product has excellent solubility, can be quickly dissolved in common solvents such as water, and the solution is stable. Its chemical activity is also good. In a specific reaction system, it can be used as an excellent catalyst or reactant to help the reaction advance efficiently.
In the way of application, it is widely involved in scientific research and experiments, providing key support for analysis and testing; in industrial production, it is also an important auxiliary agent, which can improve product performance.
After repeated trials, we have optimized the production method and strived to improve its purity and quality. I hope this product can play a greater role in all walks of life and contribute to the development of chemical industry.
Physical & Chemical Properties
The physical and chemical properties of trisodium salt of 8-hydroxy-1,3,6-pyrene trisulfonic acid can be studied. The appearance of this substance may be specific, and the color and shape have its own characteristics. Its solubility varies in various solvents, and it may or may not be soluble in water or organic agents, depending on the molecular structure and solvent characteristics. Its stability is also key, and it can be conserved or easily changed in different temperatures and humid environments. And its optical properties, such as fluorescence emission, can be used in many detection and tracing domains due to the intra-molecular conjugation system or a unique spectrum. Its acid-base properties cannot be ignored, and the ionization state in the solution affects its chemical activity and reactivity. All kinds of physical and chemical properties need to be studied in detail before exploring the application of this substance.
Technical Specifications & Labeling
For the trisodium salt of 8-hydroxy-1,3,6-pyrene trisulfonate, its technical specifications and identification (commodity parameters) are the key. Looking at this compound, its technical specifications need to be clear about the purity and heterogeneity of the components, and the proportion of each element should be accurate. For example, the ratio of carbon, hydrogen, oxygen, sulfur, and sodium elements is fixed. Its properties are also required, or it is in the state of powder, and the color and fineness should be suitable. On the logo, the name must be accurate, and the name of 8-hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt should not be confused; in the product parameters, the purity value, molecular weight, etc. must be detailed, so that the user can clarify its characteristics, in the experiment and application, it can be accurate and achieve the expected effect, without the risk of misuse or misuse.
Preparation Method
Preparation of 8-hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt (raw materials and production process, reaction steps, catalytic mechanism)
To prepare 8-hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt, first take pyrene as raw material. Mix with sulfonic acid reagents in an appropriate ratio and catalyze the reaction at a specific temperature. At the beginning of the reaction, precise temperature control is required to make the two fully blend to initiate the substitution reaction of sulfonic acid groups to specific positions in the pyrene ring.
During the reaction process, pay close attention to the degree of reaction and adjust the temperature and the ratio of reactants in a timely manner. When the reaction reaches a certain stage, introduce an appropriate amount of basic substances to promote the formation of sodium salts. This step requires fine control of alkaline strength and addition timing to prevent overreaction or formation of impurities.
In terms of catalytic mechanism, a specific catalyst is selected, which can effectively reduce the activation energy of the reaction and speed up the reaction rate. At the same time, the catalyst can guide the directional substitution of sulfonic acid groups and improve the purity of the product. After a series of precise operations, a high-purity 8-hydroxy-1,3,6-pyrene trisulfonate trisodium salt is finally obtained.
Chemical Reactions & Modifications
There is now a substance named 8 - Hydroxy - 1, 3, 6 - Pyrenetrisulfonic Acid Trisodium Salt. In the field of chemistry, its reaction and modification are really the focus of our research.
The reaction of this substance is related to its structure and characteristics. Its hydroxyl group, sulfonic acid group and other groups, or lead to acid-base reaction, substitution change. For example, the hydroxyl group can be encountered with electrophilic reagents, causing substitution reaction to produce and change its molecular structure.
When it comes to modification, chemical means can be used to adjust its physical and chemical properties. Or introduce new groups to increase its water solubility, or change its conjugate structure to change its optical properties. In this way, it can be extended and used in materials, biochemistry and other fields to develop unique capabilities. We should delve into the wonders of its reaction and modification, explore the secrets of chemistry, and contribute to the advancement of science.
Synonyms & Product Names
8-Hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt, this substance is very important in my chemical research. Its aliases and trade names also need to be investigated in detail.
When you hear about this substance, there are various other names. Or because of its exquisite structure and unique characteristics, there are many aliases. These are all named by chemists on the road of inquiry, according to their nature and production method. The trade name is written by the inter-city circulation. Manufacturers follow their own aspirations and give them good names, hoping to highlight their characteristics and attract attention.
8-Hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt, its synonym and trade name, are the keys for our generation to study this thing. Only by knowing its name can we know its nature, which is of great benefit to scientific research and practical fields.
Safety & Operational Standards
8-Hydroxy-1,3,6-pyrene trisodium salt is a special chemical substance. When using this substance, safety and operating practices are of paramount importance.
The safety aspect is first discussed. This substance may be potentially harmful to the human body. When exposed, it is necessary to take protective measures. If during operation, you should wear professional protective clothing to avoid direct contact with the skin, because it may cause irritation to the skin. At the same time, you must wear a protective eye mask and a suitable mask to prevent the substance from splashing into the eyes or its dust being inhaled into the respiratory tract, causing discomfort or even more serious health problems.
In terms of operating practices, when using this substance, use clean and precise equipment. The weighing process must be accurate, and any deviation may affect the experimental results. When dissolving this substance, a suitable solvent should be selected according to its characteristics, and the dissolution temperature and stirring speed should be strictly controlled to ensure that it is fully dissolved and does not cause adverse reactions. After use, the remaining substances should be properly stored according to regulations to avoid moisture and pollution. If there is waste during the experiment, it must be treated in accordance with relevant environmental protection requirements, and must not be discarded at will to prevent pollution to the environment. In short, in all operations involving 8-hydroxy-1,3,6-pyrene trisodium sulfonate salt, strict safety and operating standards should be adhered to to to ensure the smooth progress of the experiment, and to ensure the safety of personnel and the environment.
Application Area
8-Hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt, this substance has a wide range of uses. In the field of biochemical research, it can be used as a fluorescent probe. With its unique fluorescence properties, it can accurately detect the structure and dynamic changes of biomolecules, helping researchers to clarify complex biochemical processes in organisms. In the field of materials science, it can be used to prepare fluorescent functional materials, endow materials with specific optical properties, and has potential applications in optoelectronic devices. In the field of environmental monitoring, it can rely on its response to specific substances to detect environmental pollutants and provide assistance for environmental quality assessment. Its application in many fields is constantly expanding and deepening, like a shining star, illuminating the path of scientific research and application exploration.
Research & Development
Today there is a product, named 8 - Hydroxy - 1, 3, 6 - Pyrenetrisulfonic Acid Trisodium Salt. As a chemical researcher, I have been focusing on the research and development of this product for a long time.
This product has unique characteristics and has potential in various fields of chemistry. I have tried to study its structure and properties carefully, hoping to understand its mysteries and develop its advantages. At the beginning, the road of exploration is full of thorns. It is necessary to be careful to analyze its components and distinguish its reactions.
However, the success pays off, and it gradually gains something. After repeated tests, it was observed that it changed under different conditions, and it was known that it could be used for specific reactions or could be used as an excellent reagent. We aim to expand its application with more efforts, such as in material preparation, drug research and development, etc., so that it can be used by the world, promote the progress of the chemical field, and contribute to the development of science and technology, thus becoming a business that benefits the country and the people.
Toxicity Research
The toxicity of trisodium salt of 8-hydroxy-1,3,6-pyrene trisulfonate has been studied for a long time. Looking at this substance today, although it has been used in many fields, its toxicity cannot be ignored. The remaining elements are heavy on the evidence, so I took this substance and tried it on all kinds of living beings. At the beginning, I fed it with insects, and watched it stop. After a while, the insects were mostly sluggish, and even died. Taking mice as a test, an appropriate amount of medicine was given, and it was seen that the mice were also tired, and their eating and drinking water were reduced. And the fur gradually lost its luster, and the amount of activity decreased sharply. From this point of view, 8-hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt is toxic. Although it may be useful in industrial medicine, it should be used with caution and its harm must be carefully observed, so as not to cause harm to the common people. It is also important to pay attention to the ecology. Do not let this poison spread and damage the vitality of all things.
Future Prospects
8-Hydroxy-1,3,6-pyrene trisodium salt of trisulfonate, this chemical substance, I see the future full of expectations. It may be able to show extraordinary capabilities in the field of scientific research. Although it is in the process of research and exploration today, I believe that with time, it will be achieved. Or it can be used for precise detection, such as it can keenly capture trace substances, helping researchers to explore the subtleties; or it can emerge in the creation of materials, adding unique properties to new materials. Its structure is exquisite and its characteristics are hidden, waiting for us to explore in depth. I will devote my own efforts to study its properties, hoping to lead it to new realms, shine brightly in the future of scientific research, contribute to academic progress and technological innovation, and open up unprecedented realms and explore infinite possibilities.
Frequently Asked Questions
What is the main use of 8-Hydroxy-1,3,6-Pyrenetrisulfonic Acid Trisodium Salt?
8-Hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt, this substance has a wide range of uses. In the field of biochemical research, it is often used as a fluorescent probe. Due to its unique fluorescence properties, it can keenly detect the interactions between biomolecules, such as the binding of proteins to nucleic acids, and help researchers gain insight into the microscopic mechanisms in living organisms.
In the field of materials science, it can be used to prepare fluorescent materials. Adding it to a specific substrate can give the material excellent fluorescence properties, such as for the manufacture of Light Emitting Diodes (LEDs), which can improve the luminous efficiency and color purity, thereby improving the display effect.
It is also useful in the field of environmental monitoring. With the fluorescence response to specific substances, environmental pollutants can be detected, such as heavy metal ions in water. By observing the fluorescence changes, the concentration of pollutants can be accurately determined, providing key data support for environmental protection.
In addition, in analytical chemistry, it can be used for quantitative analysis. Using the relationship between the fluorescence intensity and the concentration of the target substance to construct a standard curve to achieve accurate determination of the target component in the sample is of great significance in food detection, drug analysis and many other aspects.
What are the physical and chemical properties of 8-Hydroxy-1,3,6-Pyrenetrisulfonic Acid Trisodium Salt
8-Hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt is a compound with unique characteristics. Its physical and chemical properties are quite critical and are of great significance in many fields.
This compound is mostly in solid form at room temperature and has good stability. In terms of solubility, because of its sulfonic acid group, it exhibits good solubility in water. This property allows it to be uniformly dispersed in aqueous systems, which is conducive to the progress of related reactions and is also convenient for various research and applications in aqueous environments.
When it comes to melting point, due to the presence of multiple polar groups and conjugated systems in the molecular structure, the intermolecular force is enhanced, so it has a relatively high melting point. This property is of great significance in the field of material preparation and other fields, which can ensure that the material maintains a stable morphology within a certain temperature range.
In terms of spectral characteristics, the pyrene ring structure in this compound gives it unique optical properties. It can absorb light of a specific wavelength, and then generate fluorescence emission. This fluorescence property makes it useful in fluorescent probes, biological imaging and other fields. With the help of the detection of fluorescence signals, it can achieve accurate detection and tracking of specific substances or biological processes.
In addition, its stability under acidic and alkaline conditions cannot be ignored. Sulfonic acid groups can be ionized to a certain extent, causing compounds to exhibit different ionization states under different pH environments, which has far-reaching implications for their applications in drug delivery, catalysis and other fields. Under suitable pH conditions, the activity and function of compounds can be effectively regulated.
8-Hydroxy-1,3,6-Pyrenetrisulfonic Acid Trisodium Salt What are the precautions during storage
8-Hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt, this is a fine chemical substance. During storage, the following things must be paid attention to:
First, the appropriate place must be selected. This substance is afraid of light and moisture, and should be placed in a cool, dry and dark place. If the light is strong, its molecular structure may be changed due to photochemical reactions, resulting in damage to its properties and functions; if the environment is humid, it is easy to absorb moisture and agglomerate, affecting its purity and use.
Second, the packaging must be tight. Use a well-sealed container to prevent excessive contact with air. Oxygen, water vapor and other components in the air may react chemically with the substance to deteriorate it. And the packaging material should also be suitable, do not react with the substance, so as not to contaminate the substance.
Third, temperature control is also the key. It is not advisable to be too high or too low temperature. Under high temperature, or accelerate its chemical reaction rate, causing it to decompose or deteriorate; if low temperature causes freezing and other conditions, or destroys its crystal structure, etc., it will affect its performance. Generally speaking, it is suitable to store in a conventional room temperature environment, generally between 15 ° C and 35 ° C.
Fourth, avoid mixing with sundries. This substance may react with other chemicals, so it cannot be stored with acids, bases, oxidants and other substances with very different properties. When storing, it should be stored in categories and clearly marked for easy access and management, while preventing danger caused by mismixing.
Fifth, regular inspection is also indispensable. Check the packaging from time to time for damage and deterioration of the substance. If the packaging is damaged, the packaging should be replaced immediately; if changes in the properties of the substance are detected, its availability should be evaluated, and if necessary, re-tested or disposed of to ensure that the substance is always in good condition.
What is the synthesis method of 8-Hydroxy-1,3,6-Pyrenetrisulfonic Acid Trisodium Salt?
The synthesis of trisodium salt of 8-hydroxy-1,3,6-pyrene trisulfonate is an exquisite chemical process. The method requires pyrene as the initial material, which has a unique chemical structure and lays the foundation for synthesis.
The first step is to sulfonate the pyrene. Select a suitable sulfonating agent, such as concentrated sulfuric acid or fuming sulfuric acid, and under the conditions of precisely controlled temperature, duration and proportion of reactants, the pyrene molecule is introduced into the sulfonate group. This process requires careful control of the reaction temperature. If the temperature is too high, it is easy to cause excessive sulfonation and form heteroaryl products; if the temperature is too low, the reaction is slow and the efficiency is poor.
Then, in the sulfonation product, hydroxyl groups are introduced by suitable hydroxylation means. The specific alkali metal hydroxide or other hydroxylating reagents are often used to achieve the substitution of hydroxyl groups for specific positions in appropriate reaction media and conditions. This step also requires fine regulation. Due to the introduction position and quantity of hydroxyl groups, the properties and functions of the final product are greatly affected.
Finally, the above product is reacted with an appropriate amount of sodium salt reagent to achieve sodium salination of the sulfonic acid group, thereby obtaining 8-hydroxy-1,3,6-pyrene trisulfonate trisodium salt. During this reaction step, separation and purification techniques, such as crystallization, extraction, column chromatography, etc., are required to remove impurities and improve the purity of the product, in order to obtain a high-quality target product.
8-Hydroxy-1,3,6-Pyrenetrisulfonic Acid Trisodium Salt is widely used in which fields
8-Hydroxy-1,3,6-pyrene trisulfonic acid trisodium salt, this substance is widely used in many fields. In the context of biochemical research, it is often used as a fluorescent probe. Because of its unique fluorescence properties, it can keenly track and detect the behavior and interactions of biomolecules, such as proteins and nucleic acids, helping researchers to gain insight into the microscopic mysteries of living organisms.
In the field of materials science, it can be integrated into fluorescent material systems to improve the fluorescence properties of materials, such as for the preparation of highly sensitive fluorescent sensors, which can accurately detect trace components in the environment by virtue of their response to specific substances.
In the field of analytical chemistry, it is an important analytical reagent. By virtue of the fluorescence signal changes when it interacts with different substances, analytical methods can be constructed for qualitative and quantitative determination of various compounds, making great contributions to the analysis of complex sample components.
And in the field of environmental monitoring, it may be able to monitor pollutants in environmental media such as water and soil. By specifically combining with pollutants to trigger fluorescence changes, it is convenient to detect the existence and content of pollutants, providing a powerful means for environmental quality assessment.
In short, 8-hydroxy-1,3,6-pyrene trisulfonate trisodium salt plays an important role in many key fields such as biochemistry, materials, analysis and environmental monitoring due to its outstanding fluorescence properties, and has broad application prospects.