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What are the main uses of diphenyldibenzimidazole sodium tetrasulfonate (DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE)?
Disodium dibenzimidazolyl disulfonate (DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE) has many uses in this world. This is a high-efficiency ultraviolet absorber, often used to protect the skin and hair from ultraviolet rays in sunlight.
In the genus of sunscreen, it can be added to various sunscreen creams, creams, and creams. It can effectively absorb ultraviolet rays, block their damage to the skin, and prevent sunburn, tanning, and photoaging. If people walk under the hot sun, applying products containing this is like wearing an invisible armor to protect the skin from sunlight.
In the realm of hair care, it can also be seen. Add shampoo, conditioner and other substances to protect the hair from UV-induced dryness, brittleness and fading, and keep the hair soft and shiny.
In addition, in the cosmetics industry, this substance can be added to foundation, barrier cream, etc., to enhance the sunscreen of the product and protect the user's makeup room. It is a key ingredient in many products related to light protection, helping everyone to resist the disturbance of ultraviolet rays in daily life and protect the health of skin and hair.
Diphenyldibenzimidazole sodium tetrasulfonate (DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE) is commonly found in which products
DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE is commonly found in many whitening products. It is often an important ingredient in fabric detergents. Because it has excellent fluorescent whitening effect, it can be adsorbed on fabric fibers, and emits blue fluorescence excited by ultraviolet rays, which complements the yellowing light on the fabric, making the fabric brighter, whiter and cleaner, as if renewed.
It is also quite common in the field of paper manufacturing. Adding this material in the paper production process can significantly improve the whiteness and gloss of paper, improve the visual effect of paper, and is widely used in the production of paper products such as writing paper and printing paper, making the paper look better and improve the quality.
In addition, it is also commonly used in the textile printing and dyeing industry. When the fabric is dyed, it can achieve whitening effect, and has good compatibility with various dyes. It does not affect the normal dyeing process. It can give the fabric a bright and white appearance and enhance the grade and market competitiveness of textile products.
Is DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE safe for human body?
Dibenzimidazolyl disodium disulfonate (DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE), which is commonly used as a sunscreen in today's beauty and skin care industry. As for whether it is safe for the human body, although the ancients have not seen this thing firsthand, it can be discussed based on today's scientific research.
Many studies and tests today have shown its effect on the human body. Numerous experimental data show that under normal dosage and use, it can effectively block ultraviolet rays for the skin, and there is no sign of significant harm to the human body. Its chemical structure is stable, forming a protective film on the surface of the skin, rather than penetrating into the depths of the body to cause damage.
However, there are also some concerns. Or some people have abnormal skin sensitivity and occasionally feel uncomfortable with this product, such as slight itching, redness, etc. However, such situations are rare and mostly due to individual specificities. Overall, after repeated verification by many parties, when following the prescribed dosage and usage, dibenzimidazolyl diphenyl disulfonate disodium is generally safe for the human body. People use it to prevent sun damage and protect the beauty of the skin without worrying about its harm.
How is the stability of DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE?
The stability of DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE is related to many aspects. This substance is quite stable under light. Because the molecular structure contains a special conjugate system, it can effectively absorb and disperse light energy, slowing down the rate of structural change caused by light, so it can remain stable in the light environment for a long time.
In the thermal environment, the stability is also good. The intermolecular force is stable, and the bond energy is large, so it needs a higher temperature to destroy the original structure. Ordinary temperature fluctuations make it difficult to decompose or deteriorate.
When encountering strong acids and bases, the stability is challenged. Because it is an organic sulfonate, in a strong acid and alkali medium, the sulfonic acid group may react with hydrogen ions and hydroxide ions, resulting in changes in molecular structure and reduced stability.
And in a high humidity environment, it may absorb moisture. After moisture absorption or changing the physical form, it has a slight impact on the stability, but as long as the ambient humidity returns to normal, it can still maintain a relatively stable state. Overall, dibenzimidazolyl diphenylvinyl disodium disulfonate has good stability under general light and temperature conditions. Only in special environments such as strong acids and bases and extreme high humidity, the stability will be affected to varying degrees.
How is the compatibility of DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE with other ingredients?
DISODIUM PHENYL DIBENZIMIDAZOLE TETRASULFONATE is a commonly used chemical raw material and is widely used in many fields. Its compatibility with other ingredients is crucial to product performance and quality.
This ingredient has good water solubility and can be well compatible with many water-soluble polymers and surfactants in aqueous systems. For example, with common polyvinyl alcohol, sodium polyacrylate and other polymers, because both have hydrophilic groups, they can interact with each other through hydrogen bonds and other interactions to coexist stably, and have no adverse effects on the thickening and dispersing properties of the system.
In terms of surfactants, non-ionic surfactants such as Tween series and Span series have good compatibility with disodium dibenzimidazolyl stilbene disulfonate. The combination of the two can synergistically improve the emulsification and dispersion capabilities of the system. Anionic surfactants, if they have similar structures, can also have good compatibility; however, when the structures are different, or due to factors such as charge rejection, the compatibility is affected.
In the field of cosmetics, the compatibility with various skin care active ingredients is also of concern. For example, with sodium hyaluronate, which is a commonly used moisturizer, the two are mixed to promote each other's moisturizing effect without mutual inhibition or precipitation. And with some components containing metal ions, such as compounds containing zinc and iron ions, or due to complexation reactions, etc., it affects the stability and composition efficacy of the system.
In the coating industry, the compatibility with film-forming resins is key. For example, with acrylic resins, the two can be well compatible, which can improve the whiteness and weather resistance of coatings; but with some special epoxy resins, or due to chemical structure differences, phase separation and other incompatibility conditions occur.