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Aduro
建設中…

Bring better products to market faster with Aduro™

 

続きを読む...Aduro™ is a scalable platform for quantitative electron microscopy. The systems revolutionize the analytical capabilities of electron microscopes by providing the ability to do in situ work at temperatures up to 1200 °C with atomic resolution. Until now, no commercially viable solutions have existed that enable real-time, dynamic thermal studies in a fast, versatile, high-resolution and easy-to-use package. With its revolutionary capabilities, Aduro™ allows you to develop products faster, understand products better and spend less money on research. Because Aduro™ is compatible with new and existing equipment, you can start improving your return on capital today.
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Poseidon
建設中…

Conduct studies in a liquid environment with Poseidon™

 

PoseidonTM allows scientists and engineers to image both materials and biological samples that are self-contained within a fully hydrated environment, effectively creating the native environment of a sample directly within the TEM.  Samples and processes that previously required freezing or were unable to be imaged live or in their operating environment can now be studied directly in their native liquid environment while observing in real time.
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C-flat
建設中…

C-flat™ Holey Carbon Grids for cryo-TEM

C-flat
C-flat™ is the premium holey carbon film for cryo-transmission electron microscopy and is manufactured without plastics, resulting in higher quality data.
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DuraSiN
建設中…

DuraSIN™ Silicon Nitride Membranes for TEM and X-ray

続きを読む...DuraSiN™ Film and Mesh products are affordably-priced, durable, non-organic, low scatter support grids for quantitative TEM and X-ray analysis. When seeking the highest possible resolution, DuraSiN™ Film and Mesh products provide the ideal platform for imaging and analysis. Unlike other support films and grids, DuraSiN™ Film and Mesh products can withstand harsh chemical and temperature environments. For example, DuraSiN™ Film or Mesh products could be used as a substrate onto which nanowires could be directly grown from a strong acidic solution. Once the nanowires are grown, the specimen is immediately ready for imaging and analysis in the TEM. With direct deposition, no longer will you have to prepare a sample on one substrate only to then have to transfer it to a support grid for imaging.
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