Farfield Scientific Expands Product Portfolio for FMCG Applications

6 Aug 2007

Product news

Leading surface science and nanometrology company Farfield Scientific has launched the latest in its range of AnaChip™ surfaces for detailed characterisation of molecular structure and interaction behaviour.

The new Cellulose AnaChip™ has been developed by Farfield in collaboration with YKI, Stockholm to provide a mimetic surface on which to study molecular-scale behaviour and reaction mechanisms. AnaChip™ surfaces are specifically designed to complement and expand the measurement capabilities of Farfield’s AnaLight® Dual Polarisation Interferometry instrument range. Late in 2006, Farfield launched what is being hailed as the first commercially-packaged, nanometrology instrument targeted at the FMCG market place, the AnaLight® NanoFlex™.

The Cellulose AnaChip™ has been developed for critical applications across FMCG industries. It will provide molecular-scale information on surface properties and interactions for paper technology and manufacture. Additionally, the cellulose surface provides a platform for fabric care studies for pre-treatment, washing and conditioning formulations at industry-leading scales of resolution.

Dr Simon Carrington, Marketing Director at Farfield Scientific, adds “The Cellulose AnaChip™ is designed to be used for applications where molecular-scale surface and interfacial measurements are needed in FMCG research, product development and manufacturing. It can be used in any application where companies need to measure and differentiate between molecular levels of adsorption, absorption or desorption at a surface. Examples include the removal of substances such as grease or oil from fabric by surfactants, the deposition of polymers in fabric conditioners or the structure and behaviour of thin ink or coating films on paper. From product performance and claim verification to water and energy conservation to optimisation of manufacturing, the enabling combination of AnaLight® instruments and the Cellulose AnaChip™ will raise the stakes in the understanding of surface science in several FMCG industrial application areas”.

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InterferometryInterferometry is an investigative technique used to analyze the pattern of interference created during the superposition of 2 or more waves. An interferometer is used to produce 2 or more overlapping waves. The interferometer is comprised of 2 or more telescopes, a detector and a correlator. The interferometer detector may utilize homodyne or heterodyne detection of the interference pattern.NanotechnologyNanotechnology, or nanotech, is an engineering technique using molecular scale functional systems. Applications of nanotechnology include medicine and medical devices, electronics, air and water purification, food science and energy production.Particle CharacterizationParticle characterization instruments are used to determine particle size distribution, shape, surface area, zeta potential, density and porosity of particles and materials. Multiple tecchniques are available for determining particle size, shape and count including dynamic light scattering (DLS), laser diffraction, electrozone (Coulter technique), imaging particle analysis and single particle optical sensing. Determine the density of your material with a gas pycnometer or examine its surface area and porosity with gas adsorption analyzers and mercury porosimeters. Find the best particle characterization instruments in our peer-reviewed product directory: compare products, check customer reviews and receive pricing direct from manufacturers.