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Buy SURFs online at:
www.nano-microscopy.com

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BOOST your optical microscope
for the Nanoworld

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Real-time characterisation of nanometric samples

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SARFUS is a new technology that increases the sensitivity of a standard optical microscope. It is based on the use of contrast-enhancing sample substrates - called Surfs (think of them as high-tech microscope slides or substrates bearing a sample to be imaged). SARFUS is routinely capable of:

  • visualising and measuring monolayers;
  • locating nano-objects.
Nanolane supplies:
  • different kinds of Surfs, depending on your applications;
  • solutions to upgrade your microscope to become SARFUS imaging as well as mapping capable;
  • all-in-one, dedicated imaging and 3D-mapping stations.
Let us open your eyes to the nanoworld !

News & Press

23-03-2012 Nanolane at Europtrode 2012 (April 1-4, 2012, Barcelona, Spain)
23-03-2012 Nanolane at 2012 MRS Spring Meeting (April, 9-13, 2012; San Francisco, US)
23-02-2012 Nanolane at Bionanomed 2012 (01-02 March 2012, Krems, Austria)

Applications

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Biochips Thin film
Nanotubes Nano-objects
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AFM prelocalization - Nano-objects localization - Antibody - Biochip - Biosensor - DNA - Cell - Organelle - Cristallization - Crystallite - Langmuir-Blodgett - Membrane - Colloid - Dot - Microcontact printing - Nanoparticle - Graphene - Nano Sheet - Non contact measurement - SEEC - Surface Enhanced Ellipsometric Contrast - Sample substrate - Carbon Nanotube - Nanofiber - Nanotube - Nanowire - Analysis in liquid - Lipid layer - Surfactant - Vesicle - Coating - CVD - PVD - Surface treatment - Layer by layer - Polyelectrolyte - Dip-pen Nanolithography - Nanopatterning - Phospholipid - Soft lithography - AFM, Raman, XPS, SIMS positioning - Micro-positioning - RAMAN prelocalization - In-situ analysis - Non-destructive testing - Optical microscopy - Quality control - Rapid surface screening - Real-time analysis - Sample physical integrity - Surface analysis - Microscope slide - Nanoscope - Optical characterization - Label-free imaging - Copolymer film - Dip-coating - Layer - Monolayers - Nanolayer - Nanomaterials - Self Assembled Monolayers - Spin-coating - Thermo-responsive polymer - Thin film
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