Can nanosurfaced screws provide breakthrough solutions for challenging extractions? Discover the results from our latest study on the removal of nanotube-treated pedicle screws in a dense bone model. Get the details of this innovative technology designed for enhanced fixation and easier extraction. Click the link below to read the full publication and explore the science behind Nanovis Ti™ Surface Technology. 🔗 https://lnkd.in/esJWmEeY #SurfaceTechnology #NanoTech #Fixation
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Expansion #Microscopy #ExM has proven to be a popular method for #SuperResolution #Imaging, but existing protocols are generally long and intensive. Preprint research introduces BOOST, an ExM variant that uses microwave exposure to significantly accelerate key steps in the process, demonstrated for single-step 10X linear expansion of large millimeter-scale specimens in ~3 hours. Click to learn more: https://bit.ly/4ddvmMw
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Learn about methods for creating nanoparticle monolayers at the air-liquid interface and seamlessly transferring them onto solid surfaces using the Langmuir-Blodgett and Langmuir-Schaefer techniques in this insightful white paper. Download now to explore advanced techniques and applications. https://hubs.li/Q02WBzth0 #Nanotechnology #LangmuirBlodgett
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Featured on the inside front cover of issue 15 of #NanoscaleAdvances! 'Bio-inspired synthesis of N-doped TiO2/C nanocrystals using jellyfish mucus with high visible-light photocatalytic efficiency' by Song Feng, Lingchen Liu, Jianing Lin, Bin Zhang et al. Check out the full article here ⬇ https://lnkd.in/edQm-h3i
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New paper online: A nonlocal Nernst-Planck-Poisson system for modeling electrochemical corrosion in Mg-based biodegradable implants, aligning simulation predictions with experimental corrosion results. https://lnkd.in/ec6fGE4k
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How Does a Sonifier Work? Sonifiers, or ultrasonic homogenizers, play a vital role in breaking down particles, disrupting cells, and mixing samples through the use of high-frequency sound waves. By applying ultrasonic energy, sonifiers create microscopic bubbles in liquids, which then collapse, generating intense shear forces. This process helps in cell lysis, nanoparticle dispersion, and even emulsification of liquids. Whether in research labs or industrial applications, sonifiers are essential for precision mixing and sample preparation. #Sonication #Ultrasonics #LabTech #ResearchInnovation#Branson Sonifier 250
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...2D materials conference continous... Day 3 is in full swing, with talks by Dmitri Basov, Cheng-Wei Qiu, Jessica Boland, Pablo Alonso-Gonzalez, Markus Raschke, Miriam Vitiello, Thomas Weitz, Yuerui Lu, Arindam Ghosh, Yong Chen, Atac Imamoglu, Sven Hoefling, Alex Holleitner, Artem Mishchenko, Alexey Kuzmenko, Qing Dai, Vladimir Zenin, Stephanie Gilbert Corder. Today's topics include Polaritons in 2D materials, Twistronics and moiré superlattices, Optical spectroscopy of 2D materials, Plasmonics #2dmaterials #quantumoptics #cryogenics #twistedbilayers #tblg #plasmonics #moiresuperlattices #spectroscopy #twistronics
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📢 𝐍𝐞𝐰 𝐏𝐮𝐛𝐥𝐢𝐜𝐚𝐭𝐢𝐨𝐧 𝐀𝐥𝐞𝐫𝐭! We're excited to share a brand-new publication in Angewandte Chemie, where Bartolome Soberats Reus and Llorenç Rubert explored a complex self-assembling cyanine system. Based on this work, new strategies for designing 2D supramolecular polymers can be unveiled, advancing innovative functional materials and stimuli-responsive systems for applications like photonics. We are also proud to have contributed by identifying the morphology and structure using 𝐒𝐖𝐀𝐗𝐒 𝐚𝐧𝐝 𝐆𝐈𝐒𝐖𝐀𝐗𝐒 𝐦𝐞𝐚𝐬𝐮𝐫𝐞𝐦𝐞𝐧𝐭𝐬, expertly carried out by our colleague Heike Ehmann 😉. Check out the full research and the cool measurements here: https://lnkd.in/eHV76f97 #SAXS #GISWAXS #materialsscience #nanomaterials #selfassembly #photonics
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Visualizing Aging in Polyethylene – According to the ISO 10640 standard. In this video, we delve into the fascinating world of Fourier Transform Infrared (FT-IR) imaging and its application in assessing the aging progression of polyethylene materials. #Bruker #LumosII #FTIR #imaging #ISO10640
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This #TechTalkTuesday we'll examine how nanoVIS Ti™ Surface Technology is applied to implants. Nanotechnologies available on the market today are applied in various ways with varying levels of complexity and throughput. NanoVIS Ti™ Surface Technology is an electrochemical based process that has two simple but distinct steps that is scaled to achieve high levels of throughput. Following these steps helps drive successful clinical outcomes. Follow us for another Tech Talk Tuesday next week! #Nanotechnology101 #SurfaceTechnology #ClinicalOutcomes
Tech Talk Tuesday - How is Our Tech Applied to Implants?
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Humidity Sensing Properties of the Sensor Based on V-doped Nanoporous Ti0.9Sn0.1O2 Thin Film Abstract Vanadium doped nanoporous Ti0.9Sn0.1O2 thin film has been prepared on an alumina substrate by sol-gel method with Pluronic P123 as the organic template, and humidity sensing properties of it has been investigated. It is found that V-doped nanoporous Ti0.9Sn0.1O2 thin film shows good humidity sensing properties, and impendence of it decreases more than four orders of magnitude in the relative humidity (RH) range of 11%–95% at 25°C. The response and recovery time of this sensor are about 13 and 17 s, respectively. High sensitivity, narrow hysteresis loop, rapid response and recovery, prominent stability and good repeatability are obtained. A possible mechanism is suggested to explain the humidity sensitive properties. https://lnkd.in/ea_mERrA
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