Surfactants
Sodium 1-octadecanesulfonate (BPM-361857)
- CAS: 13893-34-0
- Molecular Weight: 356.54
- Molecular Formula: C18H37NaO3S
N-Lauroylsarcosine sodium salt (BPM-361650)
- CAS: 137-16-6
- Molecular Weight: 293.38
- Molecular Formula: C15H28NNaO3
3-(N,N-Dimethyloctadecylammonio)propanesulfonate (BPM-299902)
- CAS: 13177-41-8
- Molecular Weight: 419.71
- Molecular Formula: C23H49NO3S
Lithium nonafluorobutanesulfonate (BPM-083112)
- CAS: 131651-65-5
- Molecular Weight: 306.03
- Molecular Formula: C4F9LiO3S
1-N-Hexadecyl-4-methylpyridinium chloride hydrate (BPM-114960)
- CAS: 13106-53-1
- Molecular Weight: 372.03
- Molecular Formula: C22H40ClN
5-decyne-4,7-diol-2,4,7,9-tetramethyl (BPM-177480)
- CAS: 126-86-3
- Molecular Weight: 226.35504
- Molecular Formula: C14H26O2
Zephirol Related Compound 3 (BPM-055918)
- CAS: 122-19-0
- Molecular Weight: 424.15
- Molecular Formula: C27H50N.Cl
Poly(ethylene glycol) 4-nonylphenyl 3-sulfopropyl ether potassium salt (BPM-185515)
- CAS: 119438-10-7
- Molecular Weight: 150.17
- Molecular Formula: C6H14O4C6H14O4C6H14O4C6H14O4
Trimethyloctadecylammonium Chloride (BPM-295377)
- CAS: 112-03-8
- Molecular Weight: 348.05
- Molecular Formula: C21H46ClN
Hexadecyltrimethylammonium chloride (BPM-177330)
- CAS: 112-02-7
- Molecular Weight: 320.0
- Molecular Formula: C19H42ClN
Dodecyl trimethyl ammonium chloride (BPM-054633)
- CAS: 112-00-5
- Molecular Weight: 263.89
- Molecular Formula: C15H34N?Cl
OctMAB (BPM-325708)
- CAS: 1120-02-1
- Molecular Weight: 392.5
- Molecular Formula: C21H46BrN
N-HEXADECYLSULFURIC ACID SODIUM SALT (BPM-386073)
- CAS: 1120-01-0
- Molecular Weight: 344.485589
- Molecular Formula: C16H33NaO4S
MitMAB (BPM-054630)
- CAS: 1119-97-7
- Molecular Weight: 336.39
- Molecular Formula: C17H38BrN
N,N,N-trimethyl-1-dodecanaminium bromide (BPM-054629)
- CAS: 1119-94-4
- Molecular Weight: 308.34
- Molecular Formula: C15H34BrN
N-Oleoyl Sarcosine (BPM-046969)
- CAS: 110-25-8
- Molecular Weight: 353.54
- Molecular Formula: C21H39NO3
Glycolic acid ethoxylate 4-tert-butylphenyl ether (BPM-358269)
- CAS: 104909-82-2
- Molecular Weight: 288.33700
- Molecular Formula: C14H24O6
1-Dodecylpyridinium chloride (BPM-294040)
- CAS: 104-74-5
- Molecular Weight: 283.88
- Molecular Formula: C17H30ClN
Decyltrimethylammoniumchloride; 95% (BPM-052957)
- CAS: 10108-87-9
- Molecular Weight: 235.84
- Molecular Formula: C13H30N?Cl
Trimethyloctylammonium chloride (BPM-357651)
- CAS: 10108-86-8
- Molecular Weight: 207.78
- Molecular Formula: C11H26ClN
Introduction

Polymer surfactants are composed of a large number of structural units containing both hydrophilic groups and hydrophobic groups, which can be divided into two series of natural and synthetic polymer surfactants.[1] Due to the unique structure of polymer surfactants, the size and position of hydrophilic groups and hydrophobic groups can be adjusted, so that both low molecular surfactants and polymer surfactants can be prepared. The preparation of natural polymer surfactants can be obtained directly from sugars or through sugar derivation and graft copolymerization.[2] The preparation of synthetic polymer surfactants generally depends on the reactive monomers. The hydrophilic group can be introduced first, and then the monomer can be polymerized; it can also be polymerized first and then the hydrophilic group can be introduced.
Polyvinyl Alcohol Surfactants
Polyvinyl alcohol is a water-soluble polymer surfactant with good dispersion, emulsification and colloid protection. The disadvantage of polyvinyl alcohol is that it has low surface activity and is easy to absorb water. Plastic products made of it are often deformed due to water swelling. In order to overcome this shortcoming, organosilicon compounds with high surface activity and high water resistance can be introduced into the molecular chain of polyvinyl alcohol to improve the surface activity and water resistance of polyvinyl alcohol.
Application
Polymer surfactants have convenient sources of raw materials, low prices, less complicated preparation process, and can meet various special needs. They are widely used in pesticide industries, electroplating industries, pharmaceutical industries, etc.
- Pesticide Industries
In the pesticide industry, wettable powders, emulsions and concentrated emulsions all require a certain amount of polymer surfactants. When the active agent in the wettable powder is an organic compound, the surfactant can reduce the surface tension of water and promote the wetting of the drug particles by water to form an aqueous suspension. In addition, a certain amount of surfactant can improve the adhesion and deposition of the agent on the receiving surface, thereby increasing the release rate and expanding area of the active ingredient in the presence of water, and enhancing the effect of disease prevention and treatment.
- Electroplating Industries
Surfactants can broaden the pH, temperature and current density ranges of the electroplating industry. It has a good dispersing effect on the metal ions precipitated in electroplating, which will help to improve the smoothness of the coating surface. Studies have shown that the electroplating effect of electroplated parts after cleaning with surfactants is significantly enhanced.
- Pharmaceutical Industries
Polymeric surfactants can be widely used in the pharmaceutical industry as pharmaceutical excipients, phase transfer catalysts in drug synthesis, and solubilizers and sensitizers in drug fluorescence analysis.
References
- Guerrero-Hernandez, L. et al. Gemini and bicephalous surfactants: a review on their synthesis, micelle formation, and uses. International journal of molecular sciences. 2022, 23(3).
- Lyu, B. et al. Research progress on reactive polymeric surfactants. China Surfactant Detergent and Cosmetics. 2019, 49(9): 601-608.
