Benzalkonium chloride

Benzalkonium chloride

CAS Number63449-41-2
Molecular FormulaC6H5CH2N(CH3)2RCl
Synonyms
  • benzethonium chloride
  • 121-54-0
  • Hyamine
  • Phemeride
  • Phemerol Chloride
  • Quatrachlor
  • Benzethoniumchloride
  • Hyamine 1622
  • Banagerm
  • Phemerol
  • Phemithyn
  • Disilyn
  • Kylacol
  • Diapp
  • Polymine D
  • Benzetonium chloride
  • Anti-germ 77
  • Benzethonii chloridum
  • Antiseptol
  • Cloruro de benzetonio
  • Inactisol
  • Neostelin green
  • Chlorure de benzethonium
  • Sanizol
  • Benzethonium chloride 1622
  • Microklenz
  • p-tert-Octylphenoxyethoxyethyldimethylbenzylammonium chloride
  • NSC-20200
  • 5929-09-9
  • benzyl-dimethyl-[2-[2-[4-(2,4,4-trimethylpentan-2-yl)phenoxy]ethoxy]ethyl]azanium;chloride
  • Diisobutylphenoxyethoxyethyl dimethyl benzyl ammonium chloride
  • Diisobutylphenoxyethoxyethyldimethyl benzyl ammonium chloride
  • CHEBI:31264
  • Phemerol chloride monohydrate

Applications:

Uv-Vis Spectrum of Benzalkonium Chloride

March 27, 2026

Access the UV-Vis Spectrum SIELC Library

If you are looking for optimized HPLC method to analyze Benzalkonium chloride check our HPLC Applications library

For optimal results in HPLC analysis, it is recommended to measure absorbance at a wavelength that matches the absorption maximum of the compound(s) being analyzed. The UV spectrum shown can assist in selecting an appropriate wavelength for your analysis. Please note that certain mobile phases and buffers may block wavelengths below 230 nm, rendering absorbance measurement at these wavelengths ineffective. If detection below 230 nm is required, it is recommended to use acetonitrile and water as low UV-transparent mobile phases, with phosphoric acid and its salts, sulfuric acid, and TFA as buffers.
For some compounds, the UV-Vis Spectrum is affected by the pH of the mobile phase. The spectra presented here are measured with an acidic mobile phase that has a pH of 3 or lower.

Application Analytes:
Benzalkonium chloride
SIELC Technologies usually develops more than one method for each compound. Therefore, this particular method may not be the best available method from our portfolio for your specific application. Before you decide to implement this method in your research, please send us an email to research@sielc.com so we can ensure you get optimal results for your compound/s of interest.

HPLC MS Method for Analysis of Benzalkonium Chloride on Primesep SB  Column

February 2, 2024

HPLC Method for Analysis of Benzalkonium chloride on Primesep SB by SIELC Technologies

HPLC Method for Analysis of Benzalkonium chloride on Primesep B Column by SIELC Technologies


 High Performance Liquid Chromatography (HPLC) Method for Analysis of Benzalkonium chloride

Benzalkonium chloride is a quaternary ammonium compound and belongs to the class of chemicals known as cationic surfactants. It is often used as a disinfectant, antiseptic, and preservative in various products, including pharmaceuticals, personal care products, and surface disinfectants.

Function: It has antimicrobial properties and is effective against bacteria, viruses, and fungi. It disrupts the cell membranes of microorganisms, leading to their inactivation.

Common Uses:

  • Disinfection of surfaces in healthcare settings.
  • Preservative in ophthalmic solutions and nasal sprays.
  • Ingredient in some antiseptic wipes and hand sanitizers.
  • Preservation agent in various personal care products.

Variants: There are different variants of Benzalkonium chloride with varying alkyl chain lengths, and the specific composition may affect its properties and applications.

Benzalkonium can be retained, and analyzed using a Primesep SB mixed-mode stationary phase column. The analysis utilizes a gradient method with a simple mobile phase consisting of water, acetonitrile (MeCN), and ammonium formate as a buffer. Detection is achieved using UV and LC MS positive mode

ColumnPrimesep SB, 2.1 x 100 mm, 5 µm, 100 A, dual ended
Mobile PhaseGradient MeCN – 30 – 70%, 10 min
BufferAmmonium formate pH 3.0 – 40 mM
Flow Rate0.2ml/min
DetectionUV 262 nm, SIM + 276, 304, 332, 360
Samples0.0025 mg/mL in MeCN/H2O – 50/50%
Injection volume1 µl
LOD*1 ppb
* LOD was determined for this combination of instrument, method, and analyte, and it can vary from one laboratory to another even when the same general type of analysis is being performed.

Class of Compounds
Alkaloid, Quaternary ammonium
Analyzing CompoundsBenzalkonium chloride

Application Column

Primesep SB

Column Diameter: 2.1 mm
Column Length: 100 mm
Particle Size: 5 µm
Pore Size: 100 A
Column options: dual ended

Add to cart
Application Analytes:
Benzalkonium chloride

Application Detection:
UV Detection
LC MS Detection
SIELC Technologies usually develops more than one method for each compound. Therefore, this particular method may not be the best available method from our portfolio for your specific application. Before you decide to implement this method in your research, please send us an email to research@sielc.com so we can ensure you get optimal results for your compound/s of interest.

HPLC Method for Separation of Hydrophobic, Cationic and Anionic Surfactants on Newcrom BH Column

July 10, 2023

HPLC Method for Separation of Hydrophobic, Cationic and Anionic Surfactants on Newcrom BH by SIELC Technologies

HPLC Method for Separation of Hydrophobic, Cationic and Anionic Surfactants

Surfactants, also known as surface-active agents, are compounds that lower the surface tension (or interfacial tension) between two liquids or between a liquid and a solid. Surfactants may act as detergents, wetting agents, emulsifiers, foaming agents, or dispersants.

They are often classified according to the charge of the polar head group:

Anionic Surfactants: These surfactants have a negative charge on their polar head group. Common examples include soap, sodium laureth sulfate, and sodium lauryl sulfate. They are commonly used in detergents and shampoos due to their ability to emulsify oils and hold dirt in suspension, so it can be rinsed away.

Cationic Surfactants: These surfactants have a positive charge on their polar head group. Examples include cetyltrimethylammonium bromide (CTAB) and benzalkonium chloride. These are often used as antiseptics and can also be found in hair conditioners because they reduce static cling.

Nonionic Surfactants: These surfactants have no charge on their polar head group. Examples include alcohol ethoxylates, nonylphenol ethoxylates, and polysorbates. Nonionic surfactants are often used in laundry and dishwasher detergents.

Sodium, which has a chemical symbol of Na, is a soft alkali metal that is highly reactive.  It is found in abundance in everyday materials like table salt, sea water, and even the Earth’s crust. It is crucial  for the body’s function and fluid balance.

1-Ethylpyridinium bromide is an ionic liquid with the chemical formula C7H10BrN. It is primarily used as a solvent at temperatures below 100oC catalysts, and electrolytes in , It has an ethyl group attached to a pyridinium ring, and its counterion is bromide (Br-). You can find detailed UV spectra of 1-Ethylpyridinium bromide and information about its various lambda maxima by visiting the following link.

Benzalkonium chloride, also known as Zephiran or Alkyldimethylbenzylammonium chloride, is a positively charged surfactant with the chemical formula C6H5CH2N(CH3)2RCl. It is often used as a pharmaceutical preservative and as an antiseptic. You can find detailed UV spectra of Benzalkonium chloride and information about its various lambda maxima by visiting the following link.

Cetylpyridinium Chloride, also written as CPC, is a cationic quaternary ammonium compound with the chemical formula C21H38ClN. It is commonly used in mouthwashes, toothpastes, lozenges, throat sprays, breath sprays, and nasal sprays due to it’s antiseptic abilities. You can find detailed UV spectra of Cetylpyridinium Chloride and information about its various lambda maxima by visiting the following link.

Chloride is typically used to refer to a compound or molecule that contains a chlorine anion: Cl. It is an electrolyte that is essential for bodily functions including blood pH, fluid balance, cellular functions, and more. Imbalance of chloride can indicate underlying health problems.

1-Pentanesulfonic acid is an organosulfonic acid with the chemical formula C5H12O3S. It is primarily used in it’s sodium salt form as an anionic pairing agent. You can find detailed UV spectra of 1-Pentanesulfonic acid and information about its various lambda maxima by visiting the following link.

Lauric acid, also known as dodecanoic acid, is a saturated fatty acid. Its chemical formula is CH₃(CH₂)₁₀COOH. It is white in color, and it is a solid at room temperature with a melting point of around 44 degrees Celsius (111 degrees Fahrenheit). It is relatively inexpensive and has a long shelf life, which makes it an attractive ingredient in various commercial products. Lauric acid is found naturally in various plant and animal fats and oils, but the largest amounts of lauric acid are found in coconut oil and palm kernel oil. In these oils, lauric acid can make up to 50% of the total fat content. It is commonly used in the manufacturing of soaps and cosmetics due to its ability to form a lather when mixed with water. It is also used in food for its role in digestion and metabolic processes. It’s a medium-chain fatty acid, which means it is more easily absorbed and utilized by the body compared to long-chain fatty acids. You can find detailed UV spectra of Dodecanoic acid (Lauric acid) and information about its various lambda maxima by visiting the following link.

p-Toluenesulfonic Acid, also known as tosylic acid, which are written as PTSA, pTSA, pTsOH, and TsOH, is an organic compound with the chemical formula C7H8O3S. It is used primarily in organic synthesis. You can find detailed UV spectra of p-Toluenesulfonic Acid and information about its various lambda maxima by visiting the following link.

1-Octanesulfonic acid is an anionic organosulfonic acid with the chemical formula C8H18O3S. It is primarily used in it’s sodium salt form as an ion-pairing agent. You can find detailed UV spectra of 1-Heptanesulfonic acid and information about its various lambda maxima by visiting the following link.

Sodium dodecyl sulfate (SDS), or sodium lauryl sulfate (SLS), is a surfactant used in cleaning, hygienic, and food products. It has a chemical formula C12H25NaSO4, meaning it has twelve carbon hydrophobic tail attached to a polar sulfate. At low concentrations, it is used as a whipping aid and emulsifier in foods containing egg whites. It has a similar use in pharmaceutics as an ionic solubilizer and, also, an emulsifier. In laboratory uses, it is used as a component for lysing cells during RNA extraction or DNA extraction. You can find detailed UV spectra of Sodium dodecyl sulfate and information about its various lambda maxima by visiting the following link.

Benzalkonium chloride, Cetylpyridinium Chloride, 1-Pentanesulfonic acid, Dodecanoic acid (Lauric acid), p-Toluenesulfonic Acid (PTSA), 1-Octanesulfonic acid, Sodium dodecyl sulfate, 1-Ethylpyridinium bromide can be retained, separated, and analyzed using a reverse-phase [colimn] column. The mobile phase for this method consists of water, acetonitrile (MeCN), and Ammonium formate, which serves as a buffer. This analytical method can be detected with an Evaporative Light Scattering Detector (ELSD) or any other evaporative detection method (CAD, ESI-MS).

Condition

ColumnNewcrom BH, 4.6 x 150 mm, 5 µm, 100 A, dual ended
Mobile PhaseGradient MeCN -40-80%, 10 min
BufferAmmonium formate pH 3.0 – 40 mM
Flow Rate1.0 ml/min
DetectionELSD, 50C

Description

Class of CompoundsSurfactants
Analyzing CompoundsBenzalkonium chloride, Cetylpyridinium Chloride, 1-Pentanesulfonic acid, Dodecanoic acid (Lauric acid), p-Toluenesulfonic Acid (PTSA), 1-Octanesulfonic acid, Sodium dodecyl sulfate, 1-Ethylpyridinium bromide

Application Column

Newcrom BH

Column Diameter: 4.6 mm
Column Length: 150 mm
Particle Size: 5 µm
Pore Size: 100 A
Column options: dual ended

Add to cart
Application Analytes:
1-Ethylpyridinium bromide
1-Octanesulfonic acid
1-Pentanesulfonic acid
Benzalkonium chloride
Cetylpyridinium Chloride
Dodecanoic acid (Lauric acid)
Sodium dodecyl sulfate
p-Toluenesulfonic Acid (PTSA)

Application Detection:
UV Detection
SIELC Technologies usually develops more than one method for each compound. Therefore, this particular method may not be the best available method from our portfolio for your specific application. Before you decide to implement this method in your research, please send us an email to research@sielc.com so we can ensure you get optimal results for your compound/s of interest.

HPLC Method for Separation of Hydrophobic, Cationic, Nonionic and Anionic Surfactants on Newcrom BH Column

July 10, 2023

HPLC Method for Separation of Hydrophobic, Cationic, Nonionic and Anionic Surfactants on Newcrom BH by SIELC Technologies

Surfactants, also known as surface-active agents, are compounds that lower the surface tension (or interfacial tension) between two liquids or between a liquid and a solid. Surfactants may act as detergents, wetting agents, emulsifiers, foaming agents, or dispersants.

They are often classified according to the charge of the polar head group:

Anionic Surfactants: These surfactants have a negative charge on their polar head group. Common examples include soap, sodium laureth sulfate, and sodium lauryl sulfate. They are commonly used in detergents and shampoos due to their ability to emulsify oils and hold dirt in suspension, so it can be rinsed away.

Cationic Surfactants: These surfactants have a positive charge on their polar head group. Examples include cetyltrimethylammonium bromide (CTAB) and benzalkonium chloride. These are often used as antiseptics and can also be found in hair conditioners because they reduce static cling.

Nonionic Surfactants: These surfactants have no charge on their polar head group. Examples include alcohol ethoxylates, nonylphenol ethoxylates, and polysorbates. Nonionic surfactants are often used in laundry and dishwasher detergents.

Sodium, which  has a chemical symbol of Na, is a soft alkali metal that is highly reactive.  It is found in abundance in everyday materials like table salt, sea water, and even the Earth’s crust. It is crucial  for the body’s function and fluid balance.

Benzalkonium chloride, also known as Zephiran or Alkyldimethylbenzylammonium chloride, is a positively charged surfactant with the chemical formula C6H5CH2N(CH3)2RCl. It is often used as a pharmaceutical preservative and as an antiseptic. You can find detailed UV spectra of Benzalkonium chloride and information about its various lambda maxima by visiting the following link.

Cetylpyridinium Chloride, also written as CPC, is a cationic quaternary ammonium compound with the chemical formula C21H38ClN. It is commonly used in mouthwashes, toothpastes, lozenges, throat sprays, breath sprays, and nasal sprays due to it’s antiseptic abilities. You can find detailed UV spectra of Cetylpyridinium Chloride and information about its various lambda maxima by visiting the following link.

Triton X100 is a nonionic surfactant with the chemical formula C14H22O(C2H4O)n. It is primarily used as a detergent in laboratories, but it has a wide variety of laboratory uses. Commercially, it can be found in cleaning compounds. You can find detailed UV spectra of Triton X100 and information about its various lambda maxima by visiting the following link.

Chloride is typically used to refer to a compound or molecule that contains a chlorine anion: Cl. It is an electrolyte that is essential for bodily functions including blood pH, fluid balance, cellular functions, and more. Imbalance of chloride can indicate underlying health problems.

1-Pentanesulfonic acid is an organosulfonic acid with the chemical formula C5H12O3S. It is primarily used in it’s sodium salt form as an anionic pairing agent. You can find detailed UV spectra of 1-Pentanesulfonic acid and information about its various lambda maxima by visiting the following link.

1-Hexanesulfonic acid is an alkyl sulfonate compound with the chemical formula C6H13O3S (or C6H13NaO3S as a sodium salt). It is primarily used in it’s sodium salt form as an ionic pairing agent in high-performance liquid chromatography.

1-Heptanesulfonic acid is an organosulfonic acid with the chemical formula C7H16O3S. It is primarily used in it’s sodium salt form as an ion-pairing agent. You can find detailed UV spectra of 1-Heptanesulfonic acid and information about its various lambda maxima by visiting the following link.

1-Octanesulfonic acid is an anionic organosulfonic acid with the chemical formula C8H18O3S. It is primarily used in it’s sodium salt form as an ion-pairing agent. You can find detailed UV spectra of 1-Heptanesulfonic acid and information about its various lambda maxima by visiting the following link.

1-Decanesulfonic acid is an alkyl sulfonic acid with the chemical formula C10H21NaO3S. It is primarily used in it’s sodium salt form as an ion-pairing agent. You can find detailed UV spectra of 1-Decanesulfonic acid and information about its various lambda maxima by visiting the following link.

Sodium dodecyl sulfate (SDS), or sodium lauryl sulfate (SLS), is a surfactant used in cleaning, hygienic, and food products. It has a chemical formula C12H25NaSO4, meaning it has twelve carbon hydrophobic tail attached to a polar sulfate. At low concentrations, it is used as a whipping aid and emulsifier in foods containing egg whites. It has a similar use in pharmaceutics as an ionic solubilizer and, also, an emulsifier. In laboratory uses, it is used as a component for lysing cells during RNA extraction or DNA extraction. You can find detailed UV spectra of Sodium dodecyl sulfate and information about its various lambda maxima by visiting the following link.

Benzalkonium chloride, Cetylpyridinium Chloride, Triton X100, 1-Pentanesulfonic acid, 1-Hexanesulfonic acid, sodium salt, 1-Heptanesulfonic acid, 1-Decanesulfonic acid, Sodium dodecyl sulfate, 1-Octanesulfonic acid can be retained, separated, and analyzed using a reverse-phase Newcrom BH, 4.6 x 250 mm, 5 µm, 100 A, dual ended column. The mobile phase for this method consists of water, acetonitrile (MeCN), and Ammonium formate, which serves as a buffer. This analytical method can be detected with an Evaporative Light Scattering Detector (ELSD) or any other evaporative detection method (CAD, ESI-MS).

Condition

ColumnNewcrom BH, 4.6 x 250 mm, 5 µm, 100 A, dual ended
Mobile PhaseGradient MeCN -40-80%, 30 min
BufferAmmonium formate pH 3.0 – 20 mM
Flow Rate1.0 ml/min
DetectionELSD, 50C

Description

Class of CompoundsAliphatic sulfonic acid
Analyzing CompoundsBenzalkonium chloride, Cetylpyridinium Chloride, Triton X100, 1-Pentanesulfonic acid, 1-Hexanesulfonic acid, sodium salt, 1-Heptanesulfonic acid, 1-Decanesulfonic acid, Sodium dodecyl sulfate, 1-Octanesulfonic acid

Application Column

Newcrom BH

Column Diameter: 4.6 mm
Column Length: 250 mm
Particle Size: 5 µm
Pore Size: 100 A
Column options: dual ended

Add to cart
Application Analytes:
1-Decanesulfonic acid
1-Heptanesulfonic acid
1-Hexanesulfonic acid, sodium salt
1-Octanesulfonic acid
1-Pentanesulfonic acid
Benzalkonium chloride
Cetylpyridinium Chloride
Sodium dodecyl sulfate
Triton X100

Application Detection:
ELSD Detection
SIELC Technologies usually develops more than one method for each compound. Therefore, this particular method may not be the best available method from our portfolio for your specific application. Before you decide to implement this method in your research, please send us an email to research@sielc.com so we can ensure you get optimal results for your compound/s of interest.

HPLC Method for Analysis of Benzalkonium Chloride on Primesep SB Column

February 8, 2023

HPLC Method for Analysis of Benzalkonium chloride on Primesep SB by SIELC Technologies

Benzalkonium chloride, also known as Zephiran or Alkyldimethylbenzylammonium chloride, is a positively charged surfactant with the chemical formula C6H5CH2N(CH3)2RCl. It is often used as a pharmaceutical preservative and as an antiseptic. You can find detailed UV spectra of Benzalkonium chloride and information about its various lambda maxima by visiting the following link.

Benzalkonium chloride can be retained on a mixed-mode stationary phase Primesep SB column with embedded strong basic ion-pairing groups, using a gradient analytical method with a simple mobile phase of water, Acetonitrile (MeCN), and a Sulfuric acid (H2SO4) ionic modifier.  This analysis method can be UV detected at 210 nm with high resolution and peak symmetry.

Condition

ColumnPrimesep SB, 3.2 x 100 mm, 5 µm, 100 A, dual ended
Mobile PhaseGradient MeCN – 30-70%, 10 min
BufferH2SO4 – 0.2%
Flow Rate0.5 ml/min
DetectionUV 210 nm
Peak Retention Time5.32, 6.93

Description

Class of CompoundsDrug
Analyzing CompoundsBenzalkonium chloride

Application Column

Primesep SB

Column Diameter: 3.2 mm
Column Length: 100 mm
Particle Size: 5 µm
Pore Size: 100 A
Column options: dual ended

Add to cart
Application Analytes:
Benzalkonium chloride

Application Detection:
UV Detection
SIELC Technologies usually develops more than one method for each compound. Therefore, this particular method may not be the best available method from our portfolio for your specific application. Before you decide to implement this method in your research, please send us an email to research@sielc.com so we can ensure you get optimal results for your compound/s of interest.

HPLC Separation of Benzalkonium Chloride BCT 8358 on Primesep D column

July 8, 2011

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Benzalkonium chloride is a mixture of alkylbenzyldimethylammonium chlorides of various even-numbered alkyl chain lengths. It is used as a surfactant. Hydrophobic quaternary amines, like BTC, produce poor peak shape in reversed-phase chromatography due to interaction of quaternary amines with residual silanols. Ideal peak shape can be achieved on reversed-phase anion-exchange columns like Primesep D. Primesep D has a basic group on the surface of silica gel that shields silanols from interacting with quaternary, tertiary, secondary and primary amines. This allows to achieve symmetrical peaks for hydrophobic basic analytes. Compounds need to be hydrophobic enough to get compensation for repulsion effect coming from stationary phase. BTC can be monitored by ELSD and UV. Primesep D will also retain acidic counter-ions of quaternary amines, so simultaneous analysis of hydrophobic basic and hydrophilic basic compounds is possible.

Condition

Column Primesep D, 4,6×150 mm, 5 µm, 100A
Mobile Phase MeCN
Buffer H3PO4
Flow Rate 1.0 ml/min
Detection 210

 

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Description

Class of Compounds
 Surfactant,  Hydrophobic, Ionizable
Analyzing Compounds Benzalkonium Chloride BCT 8358

Application Column

Primesep D

The Primesep family of mixed-mode columns offers a wide variety of stationary phases, boasting unprecedented selectivity in the separation of a broad array of chemical compounds across multiple applications. Corresponding Primesep guard columns, available with all stationary phases, do not require holders. SIELC provides a method development service available to all customers. Inquire about our specially-tailored custom LC-phases for specific separations.

Select options
Application Analytes:
Benzalkonium chloride

Application Detection:
UV Detection
SIELC Technologies usually develops more than one method for each compound. Therefore, this particular method may not be the best available method from our portfolio for your specific application. Before you decide to implement this method in your research, please send us an email to research@sielc.com so we can ensure you get optimal results for your compound/s of interest.