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New electrochemical water splitting method offers fast, sustainable method for hydrogen production |
Under the leadership of Prof. Dr. Francesco Ciucci from the University of Bayreuth, a German–Chinese research team has developed a new method for the electrochemical splitting of water. This not only accelerates the production ... |
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2024-10-21 Read more about this article in source |
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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... 08/14/2026
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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... 08/14/2026
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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... 08/14/2026
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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... 08/14/2026
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Electrospun nanofiber membranes are innovative materials produced through electrospinning process, a technique that generates ultrathin fibers from... 08/14/2026
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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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AZO Nano more ...
New Versatile Nanoplatelet Platform Optimizes Tumor Imaging and Cancer Destruction
Short-lived radioactive isotopes, or radioisotopes, can image tumors or inflict high levels of cellular damage to them. As a result, these radioisotopes can be effectively used in cancer treatments. 08/14/2026
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AZO Nano more ...
DNA Origami Nanosyringe Pierces and Reseals Membranes to Control Molecular Delivery
Researchers engineered a fuel-driven DNA origami nanosyringe that moves in approximately 14 nm steps to reversibly penetrate model lipid membranes and transport molecular cargo. The device also triggered localized DNA assembly, RNA transcription, and catalytic RNA cleavage inside synthetic cell-like vesicles. 08/14/2026
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A research team led by the U.S. Department of Energy's (DOE) Argonne National Laboratory has developed a new material that combines inorganic material with biological components to produce hydrogen peroxide more efficiently. 08/14/2026
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A vaccine's molecular structure plays a key role in determining how the immune system responds and prepares to protect the body from future exposure to a specific pathogen. To develop a vaccine that offers long-term protection ... 08/14/2026
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Understanding how ions diffuse in solid materials is essential for technologies including batteries, electronics and chemical catalysts, but it has been hard for a simple reason: the materials are solids. 08/14/2026
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An international research team including Alexander Korsunsky from the Skoltech Engineering Center has, for the first time, directly measured mechanical stresses at the contact between a diamond indenter and a complex nanostructured ... 08/14/2026
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Precision alignment systems like the PINovAlign42 are crucial for photonic integrated circuit testing, ensuring sub-micron accuracy in dynamic environments. 08/13/2026
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FMPA technology enables parallel alignment in photonics, optimizing multiple processes simultaneously for increased efficiency and cost-effectiveness. 08/13/2026
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From smartphones to data centers, modern electronics rely on billions of tiny switches that consume electricity every time they turn on or off. As global demand for computing continues to grow, so does the energy required ... 08/13/2026
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Researchers developed AquaFluoSense, a portable biosensor that combines aptamer-functionalized CdTe quantum dots with fluorescence-based detection to measure lead and arsenic in water. 08/13/2026
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From smartphones to data centers, modern electronics rely on billions of tiny switches that consume electricity every time they turn on or off. 08/13/2026
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Silicon photonics drives innovation in data transmission, enhancing efficiency in manufacturing with advanced alignment automation for photonic devices. 08/12/2026
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Innovative laser control solutions are transforming material processing, ensuring precise positioning and energy management for optimal manufacturing outcomes. 08/12/2026
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PI (Physik Instrumente), a global leader in precision motion control and nanopositioning, offers high-force piezo actuators for applications requiring fast, nanometer-scale motion while maintaining an unobstructed central opening. 08/12/2026