Towards the world of imaging with unprecedented values ​​Tip-enhanced Raman scattering microscope TERSsense-TERSense
Towards the world of imaging with unprecedented values ​​Tip-enhanced Raman scattering microscope TERSsense-Cosmo Trading Co., Ltd.

Towards the world of imaging with unprecedented values ​​Tip-enhanced Raman scattering microscope TERSsense
Cosmo Trading Co., Ltd.


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With spatial resolution and enhancement effects that exceed the diffraction limit, we will open up an unprecedented world of nano-Raman imaging. ■Raman image seen with 10nm spatial resolution Shows data from TERS imaging of CNTs and graphene. The CNT data shows that imaging can be performed with a spatial resolution of 14 nm from the full width at half maximum. In the D-band intensity image of graphene, the distribution of armchair edges could be clearly observed. The ability to perform Raman imaging with a spatial resolution on the order of 10 nm beyond the diffraction limit is the greatest appeal of NanoPhoton's TERSsense. ■Genuine TERS microscope with performance-guaranteed probe TERSsense, a tip-enhanced Raman scattering microscope developed by Nanophoton, is a technology transfer of research results from Osaka University's Kawata Laboratory and Photonics Center. The biggest advantage is that reproducibility and enhancement effects are guaranteed by utilizing the probe manufacturing technology possessed by the Kawada Laboratory. Each probe is fully tested before shipping and provided to customers with a performance guarantee. There is no need to sandwich the sample between the probe and metal-coated substrate (gap mode), and the probe alone provides high enhancement effects and reproducibility. Additionally, because it uses a transmission-type device configuration, it is possible to use an objective lens with a high numerical aperture of NA1.4, allowing for extremely sensitive measurements. ■What is a tip-enhanced Raman scattering (TERS) microscope? This is a Raman microscope that dramatically increases spatial resolution by using a sharp metal nanotip (probe) and locally enhancing Raman scattering with the nanostructure at the tip. This is a device that combines a regular laser Raman microscope and an atomic force microscope (AFM), and uses a probe with an AFM cantilever tip coated with a thin metal film.

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    Towards the world of imaging with unprecedented values ​​Tip-enhanced Raman scattering microscope TERSsense

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Towards the world of imaging with unprecedented values ​​Tip-enhanced Raman scattering microscope TERSsense-Part Number-TERSense

TERSense

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