Fajans Method: Fajans method is a type of argentometric precipitation titration used for the quantitative determination of halide ions, particularly chloride, bromide and iodide. It is a direct titration method in which standard silver nitrate solution is used as the titrant and an adsorption indicator is used to detect the endpoint.
The method is named after Kazimierz Fajans, who developed the concept of adsorption indicators.

In this method, the endpoint is detected by a change in colour of an adsorption indicator on the surface of the precipitate.
Principle of Fajans Method
Fajans method is based on the formation of a sparingly soluble precipitate and the adsorption of an indicator dye on the surface of the precipitate near the equivalence point.
For determination of chloride, standard AgNO₃ is added to the chloride-containing solution:
Ag+ + Cl− → AgCl↓
A white precipitate of silver chloride (AgCl) is formed.
An adsorption indicator such as fluorescein or dichlorofluorescein is added.
Before the equivalence point, chloride ions are present in excess. Therefore, the surface of AgCl particles preferentially adsorbs chloride ions and becomes negatively charged.
Near and just after the equivalence point, chloride ions are almost completely precipitated. A slight excess of AgNO₃ causes the AgCl particles to adsorb Ag⁺ ions, making their surface positively charged.
The negatively charged adsorption indicator is then attracted to the positively charged precipitate surface, producing a characteristic colour change.
This colour change indicates the endpoint.
Chemical Reaction
For chloride determination:
AgNO3 + Cl− → AgCl↓
or, in ionic form:
Ag+ + Cl− → AgCl↓
The precipitate is white silver chloride.
The indicator does not normally form the main precipitate. Instead, it is adsorbed onto the surface of the precipitate, causing the endpoint colour change.
Adsorption Indicator
An adsorption indicator is an organic dye that changes colour when it is adsorbed onto the surface of a precipitate.
Common indicators used in Fajans method include:
- Fluorescein
- Dichlorofluorescein
- Eosin
- Other suitable adsorption dyes
The choice of indicator depends on the precipitate and experimental conditions.
Mechanism of Fajans Method
The mechanism can be understood in three stages.
1. Before the Equivalence Point
Suppose chloride ions are being titrated with AgNO₃.
There is an excess of Cl⁻ in the solution.
The reaction is:
Ag+ + Cl− → AgCl↓
Because chloride is present in excess, the surface of AgCl particles preferentially adsorbs Cl⁻ ions.
Therefore:
AgCl ⋅ Cl−
The precipitate surface becomes negatively charged.
The anionic indicator is repelled from the negatively charged precipitate surface.
Therefore, no endpoint colour is produced.
2. At the Equivalence Point
At the equivalence point, almost all chloride ions have been precipitated as AgCl.
The surface charge of the precipitate is approaching neutral.
There is still not enough excess Ag⁺ to produce a strong positive surface charge.
Therefore, the indicator is not significantly adsorbed and the endpoint colour is not yet fully developed.
3. Just After the Equivalence Point
A very small excess of AgNO₃ is added.
Now Ag⁺ ions are present in slight excess and become preferentially adsorbed on the AgCl surface:
AgCl ⋅ Ag+
The precipitate surface becomes positively charged.
The negatively charged indicator ion is attracted to this surface and becomes adsorbed.
This produces a visible colour change.
For example, with a suitable fluorescein-type indicator, the precipitate may show a pink/reddish colour at the endpoint.
Thus:
Negative surface → neutral surface → positive surface
leads to:
Indicator repelled → little/no adsorption → indicator adsorbed → colour change
Procedure of Fajans Method
Step 1: Preparation of Sample: Take a measured volume of the sample solution containing chloride ions in a clean conical flask.
Step 2: Addition of Indicator: Add a few drops of a suitable adsorption indicator, such as dichlorofluorescein.
Step 3: Titration with AgNO₃: Fill the burette with standardized silver nitrate solution.Add AgNO₃ gradually to the sample while continuously swirling the flask.
Silver chloride precipitates:
Ag+ + Cl− → AgCl↓
Step 4: Approach the Endpoint: As the endpoint is approached, add AgNO₃ dropwise.The surface properties of the AgCl particles change as the concentration of Ag⁺ changes.
Step 5: Endpoint: Just after the equivalence point, the AgCl precipitate becomes positively charged and adsorbs the negatively charged indicator.
A characteristic pink/reddish colour change on the precipitate indicates the endpoint.
Conditions Required for Fajans Method
Several conditions must be controlled for an accurate endpoint.
1. Suitable pH: The pH must be appropriate for the selected adsorption indicator.For example, fluorescein-type indicators are affected by the ionization state of the dye.An unsuitable pH may result in a weak or indistinct endpoint.
2. Proper Indicator Concentration: Only a small amount of indicator should generally be used.Too much indicator may affect the precipitation process or obscure the endpoint.
3. Suitable Precipitate: The precipitate should have a suitable surface for adsorption of the indicator.Fine precipitates generally provide a larger surface area.
4. Continuous Stirring: The solution should be mixed continuously so that the precipitate and indicator remain uniformly distributed.
5. Absence of Interfering Ions: Other ions that can react with Ag⁺ or affect the surface charge of the precipitate may interfere with the determination.
Example: Determination of Chloride
Suppose a solution contains chloride ions.
Silver nitrate is added from a burette:
Ag+ + Cl− → AgCl↓
The amount of AgNO₃ required is equivalent to the amount of chloride present because the reaction is 1:1.
Moles Ag+ = Moles Cl−
Therefore, the concentration or amount of chloride can be calculated from the volume and concentration of AgNO₃ used.
Calculation
For the reaction:
Ag+ + Cl− → AgCl
The stoichiometric ratio is:
1:1
Therefore:
MAgNO3VAgNO3 = MCl−VCl−
Alternatively, using normality:
N1V1 = N2V2
Where:
- N1 = Normality of AgNO₃
- V1 = Volume of AgNO₃ used
- N2 = Normality of chloride solution
- V2 = Volume of sample
Advantages of Fajans Method
- It is a simple direct titration method.
- It provides a relatively sharp endpoint under suitable conditions.
- It does not require a back titration.
- It generally does not require separation of the precipitate.
- It can be used for the determination of chloride, bromide and iodide under appropriate conditions.
- The method is useful in pharmaceutical and analytical chemistry.
- It uses a small quantity of adsorption indicator.
Limitations of Fajans Method
- The endpoint depends strongly on the adsorption properties of the precipitate.
- The appropriate pH must be maintained.
- Coloured or turbid samples can make the endpoint difficult to observe.
- Some substances may interfere with adsorption of the indicator.
- The precipitate must have suitable physical properties.
- Excessive amounts of indicator can affect the precipitation process.
- The method is less suitable when the endpoint colour change is weak or difficult to observe.
Comparison of Mohr, Volhard and Fajans Methods
| Feature | Mohr Method | Volhard Method | Fajans Method |
| Type | Direct precipitation titration | Usually back titration | Direct precipitation titration |
| Main titrant | AgNO₃ | KSCN/NH₄SCN | AgNO₃ |
| Indicator | K₂CrO₄ | Fe³⁺ | Adsorption indicator |
| Example indicator | Potassium chromate | Ferric ammonium sulfate | Fluorescein/dichlorofluorescein |
| Medium | Near neutral | Acidic | Depends on indicator |
| Main precipitate | AgCl | AgCl/AgSCN | AgCl |
| Endpoint | Brick-red Ag₂CrO₄ | Blood-red ferric thiocyanate | Colour change due to indicator adsorption |
| Principle | Formation of chromate precipitate at endpoint | Back titration of excess Ag⁺ | Change in surface charge and adsorption of indicator |
| Filtration | Usually not required | May be required in classical chloride procedure | Not normally required |
Key Point to Remember
The easiest way to remember Fajans method is:
Fajans = adsorption indicator + surface charge change + colour change at the precipitate surface.
Three argentometric methods in one line:
- Mohr: AgNO₃ + chromate indicator → brick-red Ag₂CrO₄
- Volhard: Excess AgNO₃ + thiocyanate + Fe³⁺ → blood-red complex
- Fajans: AgNO₃ + adsorption indicator → colour change due to adsorption on precipitate
Editorial Note
This article has been carefully researched and written by Deepak Rajput with a focus on accuracy, clarity, and evidence-based healthcare information. Pharmaacademias.com






