Magnetic spin bars are useful for laboratory stirring and allow for precise mixing without mechanical parts touching the fluid, unattended operation and prevent contamination. They are ideal for small-scale, low-viscosity applications where consistency and cleanliness are critical, offering better control than manual stirring.

Benefits:
Contamination-free – Bars are coated with PTFE or glass, so no lubricants or metal parts enter the liquid, crucial for sensitive experiments.
Quiet and efficient – Magnetic spin bars create vortexes and uniform movement compared to manual stirring
Automation, precision and consistency – The motorised stirring base can stir consistenenty for long periods and also keep solutions at constant temperatures
Easy to clean and handle – Simple bar designs make them easy to sterilise with magnetised coated retrieval tools to remove the bar from the solution.
Things to consider when choosing a stirring bar for your application:
Size – The bar needs to be able to fit through the opening of the vessel being used.
Shape – Each bar shape has a slightly different effect. See the table below to choose from the range of shape options to consider,
Composition – Magnetic stirring bars coated with PTFE (Teflon) are heat resistant and chemically inert, but glass coated options are ideal for very high temperature applications, as well as for use with abrasive materials.
Rare Earth stirring bars – Identified by a carbon black spot on the bar, they have a much greater magnetic strength, making them useful for stirring viscous samples and are almost completely resistant to demagnetisation, so don’t require regular replacement.
It can also be useful to consider mechanical (overhead) stirring. Sometimes magnetic stirring may not be sufficient if your sample is particularly viscous, or the viscosity is expected to increase during the experiment, magnetic stirring will likely not be powerful enough for the mixing process. Similarly, if there are solids or crystals in your sample then the magnetic stirring bar may grind them between the stirrer and the glass. In these instances, the use of an overhead stirrer is advised, there are also various stirring shafts available.
Magnetic Spin Bar Shapes
Stir Bar | Stirring Style | Vessel Type |
![]() | Cross | Beakers and flasks |
![]() | Crosshead | Narrow test tubes, cuvettes, and flasks |
![]() | Cylindrical (Plain) | Beakers, flasks and flat-bottomed labware |
![]() | Disc | Deep vessels |
![]() | Double-ended | Tall or narrow vessels like test tubes or cylinders |
![]() | Flute | Conical flasks or round-bottomed vessels |
![]() | Hub | Round or uneven-bottomed flasks |
![]() | Micro (Flea) | Vials, tubes, gradient makers spectrophotometer cells |
![]() | Octahedral | Vessels with uneven or curved bottoms, round-bottom flasks, vials, and tubes |
![]() | Oval | Round-bottom flasks, vials, and curved vessels, |
![]() | Pivot Ring | Flasks or vessels with curved/uneven bottoms |
![]() | Spherical | Small volume containers, test tubes and vials |
![]() | Square | Larger vessels |
![]() | Tapered | Small volumes in test tubes/narrow vessels and containers with sloped bottoms |
![]() | Triangular | Large vessels |
![]() | Tube | Spectrophotometer cells, cuvettes or test tubes |
![]() | Wing | Test tubes or flasks |
![]() | Glass | Beakers, flasks and flat-bottomed labware |
There are a range of Magnetic Retrival Tools available at ProSciTech.


















