看了布魯克nanoIR AFM紅外原子力顯微鏡的用戶又看了
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nanoIR™產(chǎn)品被學(xué)術(shù)和工業(yè)科學(xué)家、工程師應(yīng)用于軟質(zhì)和硬質(zhì)材料學(xué)和生命科學(xué)。*近,Anasys推出的10納米分辨率nanoIR成像進(jìn)一步提高了產(chǎn)品性能。
Every product in the Anasys Instruments family is built around our full featured AFM supporting many routinely used AFM imaging modes. These include tapping, phase, contact, force curves, lateral force, force modulation, EFM, MFM, CAFM and more.
The nanoIR3 provides nanoscale FTIR spectroscopy that directly correlates to bulk FTIR databases providing true, model free nanoscale FTIR spectra for a wide range of polymers. It provides the highest resolution chemical and material property mapping capabilities of any systems with resolution to 10 nm.
2D materials and nano-photonics provide an exciting area of materials research and development for a wide range of new applications. The nanoIR3 scattering SNOM platform provides unique capabilities to characterize the nanoscale optical, chemical and material properties of a broad range of novel 2D and quantum materials. The ability to provide complementary AFM-IR measurements provides unmatched nanoscale IR spectroscopy to help researcher make new discoveries.
Failure analysis and materials characterization groups within industrial companies are focused on solving problems to help improve process development and resolve process related problems to help their organization saves costs and increase revenue. The nanoIR3 provides a complete nanoscale FTIR, nanoscale chemical imaging and materials characterization platform. It combines two complementary nanoscale IR techniques, AFM-IR and scattering SNOM coupled with AFM based materials property mapping. The nanoIR platform is productive and reliable getting you productive within a day.
Life science research is continually achieving new discoveries due to new nanoscale IR spectroscopy. The nanoIR3 provides unrivalled nanoscale FTIR spectroscopy as well as chemical, structural and mechanical property mapping of a broad range of biological materials. Researchers using AFM-IR have generated groundbreaking conclusions in protein secondary structures that are linked to disease formation.
Lorentz Contact Resonance (LCR) creates nanomechanical contact resonance spectra that can be used to differentiate materials based on their viscoelastic properties. LCR maps the distribution of multiple components of a sample, and allows precise location of the probe for subsequent chemical and/or thermal analysis. Since LCR uses Anasys Instruments proprietary self-heating ThermaLever™ probes, it can also rapidly measure temperature dependent variations in a sample’s mechanical properties. The technique has provided exciting results for polymer blends, multilayer films, composite materials, and life sciences.
3rd generation Resonance enhanced AFM-IR provides monolayer sensitivity
AFM-IR spectra and IR imaging shows variation of IR signal at different sites
nanoIR™ AFM是納米級、亞微米級和宏觀光熱紅外光譜測量領(lǐng)域的全球領(lǐng)導(dǎo)產(chǎn)品。以納米級的空間分辨率測量樣品物理特性和化學(xué)特性在空間上的變化,可涵蓋各種不同領(lǐng)域,包括:聚合物、二維材料、材料學(xué)、生命科學(xué)和微電子等。我們的目標(biāo)是通過提供有效的解決方案,幫助研究人員明確前進(jìn)方向,幫助工業(yè)界解決關(guān)鍵的工藝難題。
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