Battery technology lies at the heart of the transition to sustainable energy and continues to develop at a rapid pace. The quest for ever higher energy densities requires optimization of current and next gen cell designs at the microscopic and macroscopic level. X-Ray Microscopy (XRM) can help you in this pursuit, as it provides a 3D internal view of precursor materials, individual battery cell components and assembled battery cells at both levels without the need for physical sectioning. The example below illustrates the power of XRM for visualizing and analyzing a CAM foil with our 3D.SUITE software. Discover all the Clean Energy Applications of XRM in our brand-new flyer: https://okt.to/1gdjJw #BrukerAXS #XRM #BatteryResearch #CleanEnergy
Oliver Schuster’s Post
More Relevant Posts
-
Battery technology lies at the heart of the transition to sustainable energy and continues to develop at a rapid pace. The quest for ever higher energy densities requires optimization of current and next gen cell designs at the microscopic and macroscopic level. X-Ray Microscopy (XRM) can help you in this pursuit, as it provides a 3D internal view of precursor materials, individual battery cell components and assembled battery cells at both levels without the need for physical sectioning. The example below illustrates the power of XRM for visualizing and analyzing a CAM foil with our 3D.SUITE software. Discover all the Clean Energy Applications of XRM in our brand-new flyer: https://okt.to/vIHUZb #BrukerAXS #XRM #BatteryResearch #CleanEnergy
To view or add a comment, sign in
-
Battery technology lies at the heart of the transition to sustainable energy and continues to develop at a rapid pace. The quest for ever higher energy densities requires optimization of current and next gen cell designs at the microscopic and macroscopic level. X-Ray Microscopy (XRM) can help you in this pursuit, as it provides a 3D internal view of precursor materials, individual battery cell components and assembled battery cells at both levels without the need for physical sectioning. The example below illustrates the power of XRM for visualizing and analyzing a CAM foil with our 3D.SUITE software. Discover all the Clean Energy Applications of XRM in our brand-new flyer: https://okt.to/2LFie1 #BrukerAXS #XRM #BatteryResearch #CleanEnergy
To view or add a comment, sign in
-
Battery technology lies at the heart of the transition to sustainable energy and continues to develop at a rapid pace. The quest for ever higher energy densities requires optimization of current and next gen cell designs at the microscopic and macroscopic level. X-Ray Microscopy (XRM) can help you in this pursuit, as it provides a 3D internal view of precursor materials, individual battery cell components and assembled battery cells at both levels without the need for physical sectioning. The example below illustrates the power of XRM for visualizing and analyzing a CAM foil with our 3D.SUITE software. Discover all the Clean Energy Applications of XRM in our brand-new flyer: https://okt.to/S9hTnB #BrukerAXS #XRM #BatteryResearch #CleanEnergy
To view or add a comment, sign in
-
- Product Sales Manager AXS - Business Development Representative @ Bruker AXS for X-Ray Diffractometry, X-Ray Fluorescence, X-Ray 3D Microscopy mCT. BeLux, Fr. & Corsica. - Afgevaardigde vakbond BBTK (ABVV Antwerpen)
Battery technology lies at the heart of the transition to sustainable energy and continues to develop at a rapid pace. The quest for ever higher energy densities requires optimization of current and next gen cell designs at the microscopic and macroscopic level. X-Ray Microscopy (XRM) can help you in this pursuit, as it provides a 3D internal view of precursor materials, individual battery cell components and assembled battery cells at both levels without the need for physical sectioning. The example below illustrates the power of XRM for visualizing and analyzing a CAM foil with our 3D.SUITE software. Discover all the Clean Energy Applications of XRM in our brand-new flyer: https://okt.to/xuRbrC #BrukerAXS #XRM #BatteryResearch #CleanEnergy
To view or add a comment, sign in
-
Battery technology lies at the heart of the transition to sustainable energy and continues to develop at a rapid pace. The quest for ever higher energy densities requires optimization of current and next gen cell designs at the microscopic and macroscopic level. X-Ray Microscopy (XRM) can help you in this pursuit, as it provides a 3D internal view of precursor materials, individual battery cell components and assembled battery cells at both levels without the need for physical sectioning. The example below illustrates the power of XRM for visualizing and analyzing a CAM foil with our 3D.SUITE software. Discover all the Clean Energy Applications of XRM in our brand-new flyer: https://okt.to/SNGq40 #BrukerAXS #XRM #BatteryResearch #CleanEnergy
To view or add a comment, sign in
-
Battery technology lies at the heart of the transition to sustainable energy and continues to develop at a rapid pace. The quest for ever higher energy densities requires optimization of current and next gen cell designs at the microscopic and macroscopic level. X-Ray Microscopy (XRM) can help you in this pursuit, as it provides a 3D internal view of precursor materials, individual battery cell components and assembled battery cells at both levels without the need for physical sectioning. The example below illustrates the power of XRM for visualizing and analyzing a CAM foil with our 3D.SUITE software. Discover all the Clean Energy Applications of XRM in our brand-new flyer: https://okt.to/cOVRuU #BrukerAXS #XRM #BatteryResearch #CleanEnergy
To view or add a comment, sign in
-
Applied Analytics Register Today: Live Fundamentals of Spectroscopy Webinar Join us on Thursday, October 10th at 1pm (EST) for an introduction to the fundamentals of spectroscopy. In this information packed session, you’ll learn more about: - Light and optics - Molecules and bonding - Ultraviolet-visible spectroscopy - Infrared spectroscopy - Spectrometer technology The session will end with a Q&A section to address any remaining questions that you may have about spectroscopy or the technology that makes it possible. Don’t miss out on this opportunity! Be sure to register today to reserve your spot! Click the link to register. https://lnkd.in/eCY_mdwn #AppliedAnalyticsInc #Spectroscopy #Webinar #Technology #Ultraviolet #UV #Analyzer #OnlineAnalyzers Or scan the QR code to register.
To view or add a comment, sign in
-
As a #research scientist focused on pioneering display technologies, you know the importance of precise characterization tools. 🔬Phelos: A Revolutionary Angular Luminescence Spectrometer 🌟🔬 Phelos by Fluxim stands out as a compact, advanced spectrometer integrating both Electroluminescence (EL) and Photoluminescence (PL) spectroscopy. Key Benefits: ✅ In-depth analysis of light-emitting devices and thin films. ✅ Versatile PL spectroscopy for materials like quantum-dots and perovskites. ✅ Detailed EL spectroscopy for OLEDs, with polarization analysis. ✅ Enhanced data analysis with Fluxim’s Setfos software for comprehensive device modeling. Explore more about Phelos here: fluxim.com/phelos Binh-Minh (Minh) Nguyen Markus Schmidt Tommaso Marcato #ResearchInnovation #DisplayTechnology #Phelos #Fluxim #Spectrometer
To view or add a comment, sign in
-
Unmatched Clarity! Our technology provides 1 million times magnification for detailed insights.
Uncovering Failures: Scanning Electron Microscopy with Energy Dispersive X-Ray Analysis! Dive into the world of Scanning Electron Microscopy (SEM) and Energy Dispersive X-Ray Analysis (EDX) as we analyze failures and damages in electronic components. This state-of-the-art technology achieves an astounding 1 million times magnification with nanometer resolution, delivering the highest quality insights into material structures and hidden defects that can affect performance. Watch the full video on YouTube: https://bit.ly/4gNOTpk #SEMexamination #EDXAnalysis #TechPrecision #DetailedInspection #QualityAssurance #TechInnovation #TechAdvancements #ElectronicsTesting #TechInsights #InnovativeSolutions #PrecisionEngineering #FutureTech
To view or add a comment, sign in
-
Nice to see the reliability of these lasers.
Who says that supercontinuum technology from NKTP is not reliable...? People were very impressed when the first supercontinuum laser was introduced more than 15 years ago. It made it possible to get diffraction limited light (a laser) from 400 to 2500 nm, which made it possible to characterize exotic nanomaterials or excite fluorophores to get the best possible image. The technology was, despite the many possible options for being utilized in many different applications, considered somewhat fragile due to the degradation in the non-linear fiber. NKTP decided in 2016 to improve the lifetime and worked intensely to improve especially the non-linear fiber lifetime, but also components as amplifier and seed laser. We can today as the only supercontinuum laser manufacturer predict and document expected lifetime between 6.000-10.000 hours. However, we know that our lasers typically can do much more than that, but it takes time and we have decided to stop most of our tests after 10.000 hours. Our customers do not stop using SuperK! We have recently received a booster (amplifier and non-linear fiber) from one of our industrial customers. The laser has been running day and night for 50.000 hours. The booster has now been replaced, and the laser will work again for another 4 years. Below is a plot from the lasers internal log file, where we can document 50.000 hours! #SuperK #Whitelightlaser #broadband_light
To view or add a comment, sign in