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Ultrathin silicon structures can tune mid-IR light in billionths of a second |
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Light in the mid-infrared (mid-IR) portion of the electromagnetic spectrum plays a key role in modern sensing. Because molecules interact with this kind of light in specific ways, researchers use technologies like mid-IR ... |
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2026-09-11 Read more about this article in source |
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Advanced microspectroscopy techniques enable non-destructive characterization of carbon nanotubes and graphene, essential for research and quality assurance. 09/10/2026
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Diabetic ulcer is a prevalent complication affecting a large number of individuals globally and presents a significant challenge in healthcare, often... 09/11/2026
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Plant biomass is a sustainable resource created by absorbing and fixing carbon dioxide from the atmosphere. The basic unit of cells is made up of... 09/11/2026
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The properties of produced nanofibers are normally too small to be observed with the naked eye. Therefore, advanced equipment is necessary to... 09/11/2026
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The target audience of this is senior undergraduate and graduate students, researchers, and engineering practitioners who are about to enter or... 09/11/2026
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Electrospun nanofiber membranes are innovative materials produced through electrospinning process, a technique that generates ultrathin fibers from... 09/11/2026
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Muscovite identified as a low-index building block for ultrathin van der Waals photonic components
Researchers have demonstrated that a naturally occurring mineral can serve as a low-loss optical material for next-generation broadband all–van der Waals nanophotonic components. 09/11/2026
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Light in the mid-infrared (mid-IR) portion of the electromagnetic spectrum plays a key role in modern sensing. Because molecules interact with this kind of light in specific ways, researchers use technologies like mid-IR ... 09/11/2026
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Scientists led by the Universitat Politècnica de Barcelona and the ESRF, the European Synchrotron, have revealed the chemical reactions in nanoparticles that created a unique, shimmering effect in the painting on ninth-century ... 09/11/2026
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Injectable nanodevices could provide effective treatment for drug-resistant glioblastoma
Glioblastoma is one of the most aggressive and treatment-resistant brain cancers known to medicine, carrying a median survival of just 12–15 months, even with the best available care. 09/10/2026
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A research team at the University of Vienna led by physicist Jani Kotakoski demonstrates how the shape of nanopores in hexagonal boron nitride—the electrically insulating counterpart to graphene, also known as "white graphene"—can ... 09/10/2026
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Placing two lattices - like window screens - on top of each other and twisting one layer compared to the other creates intriguing patterns. In fact, there are toys based on the designs that emerge, called moiré patterns. 09/10/2026
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Researchers at Argonne are shaping the nanoscience frontier, using atomic-scale control to accelerate advances in electronics, energy storage, catalysis, sensing and medicine. 09/10/2026
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Nanoscale HZO-SiO₂ Engineering Stabilizes Resonators Across Wide Temperature Swings
Researchers engineered HZO-SiO2 nanomechanical resonators that use nanoscale oxide layering and phase-dependent elasticity to suppress temperature-driven frequency drift while retaining electrical tunability. The CMOS-compatible platform combined passive thermal compensation with voltage-controlled stiffness tuning, highlighting how ferroelectric oxide nanostructures could support more stable integrated resonators. 09/10/2026
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How Isolated Nanoclusters Could Make Lithium Metal Batteries Safer and Longer Lasting
Researchers developed a sterically regulated electrolyte that uses a non-flammable cyclic fluorinated diluent to form isolated solvation nanoclusters, improving lithium-ion transport and stabilizing interfaces in lithium metal batteries. The system enabled NCM811 coin cells to retain 80% capacity after more than 800 cycles, while a separate 6 Ah pouch cell exceeded 500 Wh kg?¹ and showed favorable behavior in nail-penetration and severe overcharge tests. 09/09/2026
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Microspectrophotometry offers a non-destructive method for measuring thin film thickness, crucial for the performance of semiconductor devices and optics. 09/08/2026
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PILine® positioning systems utilize ultrasonic piezo motors for unmatched precision and speed, essential for advanced scientific and medical applications. 08/14/2026
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Microspectrophotometry combines microscopy and UV-visible-NIR spectrophotometry for precise analysis of microscopic samples, enhancing quantitative measurement. 08/19/2026
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PILine® positioning systems utilize ultrasonic piezo motors for unmatched precision and speed, essential for advanced scientific and medical applications. 08/14/2026