Events

Aug 12, 2024 | 1 min read

Size Analysis of Nanoparticles in High-turbid Particle Dispersions

Webinar NANOPHOX CS

Time: September 10

Location: Virtual Event

We would like to welcome you to our upcoming webinar focussing on improving your nanoparticle analysis in highly concentrated dispersions. Discover how the application of our unique and patent-pending dynamic light scattering (DLS) technique significantly improves the precision and accuracy of your nanoparticle measurements, leading to enhanced product quality and performance. 

Accurate particle size analysis is crucial for various industries, especially when dealing with complex formulations and emulsions. Obtaining reliable measurement results in turbid formulations can be particularly challenging due to the interference from multiple scattering and other misleading signals. Traditional methods often prove inadequate, necessitating time-consuming preparation of samples and still leaving scope for inaccuracies. We demonstrate a method for accurately measuring your samples without the need for dilution.

Our advanced analytical technique combines dynamic light scattering (DLS), photon cross-correlation spectroscopy (PCCS) and our patent-pending polarisation-separated backscattering technology to enable accurate and fast analysis, especially for opaque samples.

Discover the diverse range of applications and the substantial benefits of this technology for nanoparticle research and industrial practice. Gain valuable insights and stay ahead in nanoparticle size analysis.

During the webinar, you are invited to engage with our experts in live Q&A sessions.

Learn more about analysing nanoparticles in highly turbid suspensions and emulsions with the NANOPHOX CS in Sympatec's webinar recording.

Register here

NANOPHOX CS | Nanoparticle size analysis

Particle size analysis of nanoparticles in highly turbid dispersions from 0.5 nm to 10,000 nm based on dynamic light scattering.

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Dynamic Light Scattering

Dynamic light scattering (DLS) is a robust, simple and non-contact method for the measurement of particle size and particle size distributions from the nanometre to the submicron range.

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Application | Ink Pigments

The particle size and disttribution width of pigment particles are of significant importance for quality characteristics such as colour intensity and surface quality of inks or paints.

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Application | Ophthalmic Emulsion

The precise characterisation of the particle size distribution influences quality-determining product parameters and is a prerequisite for approval.

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