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Categories: Energy: Batteries, Engineering: Nanotechnology

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Chemistry: Inorganic Chemistry Engineering: Nanotechnology
Published

Under extreme impacts, metals get stronger when heated, study finds      (via sciencedaily.com)     Original source 

Scientists have discovered that when metal is struck by an object moving at a super high velocity, the heat makes the metal stronger. The finding could lead to new approaches to designing materials for extreme environments, such as shields that protect spacecraft or equipment for high-speed manufacturing.

Chemistry: Thermodynamics Engineering: Nanotechnology Offbeat: General Physics: General Physics: Quantum Computing
Published

Strings that can vibrate forever (kind of)      (via sciencedaily.com)     Original source 

Researchers have engineered string-like resonators capable of vibrating longer at ambient temperature than any previously known solid-state object -- approaching what is currently only achievable near absolute zero temperatures. Their study pushes the edge of nanotechnology and machine learning to make some of the world's most sensitive mechanical sensors.

Energy: Technology Engineering: Nanotechnology Environmental: General Environmental: Water Geoscience: Environmental Issues
Published

Recycling carbon dioxide into household chemicals      (via sciencedaily.com)     Original source 

Scientists report a family of tin-based catalysts that efficiently converts CO2 into ethanol, acetic acid and formic acid. These liquid hydrocarbons are among the most produced chemicals in the U.S and are found in many commercial products.

Chemistry: Biochemistry Energy: Batteries
Published

Batteries: Modeling tomorrow's materials today      (via sciencedaily.com)     Original source 

Which factors determine how quickly a battery can be charged? Microstructural models have helped researchers discover and investigate new electrode materials. When sodium-nickel-manganese oxide is used as cathode material in sodium-ion batteries, simulations reveal modifications of the crystal structure during charging. These modifications lead to an elastic deformation, as a result of which capacity decreases.

Chemistry: Inorganic Chemistry Chemistry: Thermodynamics Energy: Technology Engineering: Nanotechnology
Published

Powering wearable devices with high-performing carbon nanotube yarns      (via sciencedaily.com)     Original source 

Carbon nanotube (CNT) yarns are promising for flexible and fabric-type wearable materials that can convert waste heat into thermoelectricity. To improve the thermoelectric properties of CNT yarns, researchers dispersed CNT filaments in a highly viscous glycerol, enabling the production of CNT yarn with highly aligned bundles together with surfactants that prevent increased thermal conductivity. This innovative approach can significantly improve carbon nanotube-based thermoelectric materials, making it possible to power wearable devices using just body heat.

Chemistry: Inorganic Chemistry Engineering: Graphene Engineering: Nanotechnology Physics: General Physics: Quantum Computing Physics: Quantum Physics
Published

Enhancing superconductivity of graphene-calcium superconductors      (via sciencedaily.com)     Original source 

Researchers experimentally investigate the impact of introducing high-density calcium on the superconductivity of calcium-intercalated bilayer graphene.

Chemistry: Biochemistry Chemistry: Organic Chemistry Computer Science: General Engineering: Nanotechnology
Published

Blueprints of self-assembly      (via sciencedaily.com)     Original source 

Scientists have taken a step closer to replicating nature's processes of self-assembly. The study describes the synthetic construction of a tiny, self-assembled crystal known as a 'pyrochlore,' which bears unique optical properties. The advance provides a steppingstone to the eventual construction of sophisticated, self-assembling devices at the nanoscale -- roughly the size of a single virus.

Chemistry: Inorganic Chemistry Engineering: Nanotechnology Environmental: General Environmental: Water Geoscience: Environmental Issues
Published

Expanding on the fundamental principles of liquid movement      (via sciencedaily.com)     Original source 

We are living in a world surrounded by liquid and flow, and understanding the principles that govern its movement is vital in our high-tech world. Through mathematical modeling and experimentation, researchers have expanded on Tanner's Law -- a law in fluid dynamics that describes how non-volatile liquids move across surfaces -- to cover a wider range of volatile liquids. These findings have the potential to play a role in various liquid-based industries such as electronics cooling.

Engineering: Graphene Engineering: Nanotechnology Physics: General Physics: Optics
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Ion irradiation offers promise for 2D material probing      (via sciencedaily.com)     Original source 

Two-dimensional materials such as graphene promise to form the basis of incredibly small and fast technologies, but this requires a detailed understanding of their electronic properties. New research demonstrates that fast electronic processes can be probed by irradiating the materials with ions first.

Chemistry: Biochemistry Chemistry: Inorganic Chemistry Chemistry: Organic Chemistry Engineering: Nanotechnology Offbeat: Computers and Math Offbeat: General Physics: General Physics: Optics
Published

Diamond glitter: A play of colors with artificial DNA crystals      (via sciencedaily.com)     Original source 

Using DNA origami, researchers have built a diamond lattice with a periodicity of hundreds of nanometers -- a new approach for manufacturing semiconductors for visible light.

Chemistry: General Energy: Batteries Environmental: General Geoscience: Geochemistry
Published

Carbon-capture batteries developed to store renewable energy, help climate      (via sciencedaily.com)     Original source 

Researchers are developing battery technologies to fight climate change in two ways, by expanding the use of renewable energy and capturing airborne carbon dioxide. Researchers recently created and tested two different formulations for batteries that store renewable energy; when the energy is later used, an electrochemical reaction converts industrial carbon dioxide emissions into a solid form that has the potential to be used in other products.

Chemistry: General Energy: Batteries Environmental: General Environmental: Water Geoscience: Environmental Issues Geoscience: Geochemistry
Published

Making batteries takes a lot of lithium: Some could come from gas well wastewater      (via sciencedaily.com)     Original source 

A new analysis suggests that if it could be extracted with complete efficiency, lithium from the wastewater of Marcellus shale gas wells could supply up to 40% of the country's demand.

Chemistry: General Engineering: Nanotechnology Environmental: General Geoscience: Environmental Issues Geoscience: Geochemistry
Published

Green concrete recycling twice the coal ash is built to last      (via sciencedaily.com)     Original source 

New modelling reveals that low-carbon concrete can recycle double the amount of coal ash compared to current standards, halve the amount of cement required and perform exceptionally well over time.

Engineering: Nanotechnology Engineering: Robotics Research Physics: Optics
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Researchers use artificial intelligence to boost image quality of metalens camera      (via sciencedaily.com)     Original source 

Researchers have leveraged deep learning techniques to enhance the image quality of a metalens camera. The new approach uses artificial intelligence to turn low-quality images into high-quality ones, which could make these cameras viable for a multitude of imaging tasks including intricate microscopy applications and mobile devices.

Chemistry: General Engineering: Nanotechnology Environmental: Water Geoscience: Geochemistry
Published

Scientists develop an affordable sensor for lead contamination      (via sciencedaily.com)     Original source 

A new system could enable simple, low-cost detectors for monitoring water for lead contamination, and potentially other heavy metals as well.

Chemistry: General Chemistry: Organic Chemistry Energy: Batteries
Published

Eco-friendly and affordable battery for low-income countries      (via sciencedaily.com)     Original source 

A battery made from zinc and lignin that can be used over 8000 times. This has been developed with a vision to provide a cheap and sustainable battery solution for countries where access to electricity is limited.

Biology: Biochemistry Biology: Cell Biology Biology: General Biology: Microbiology Chemistry: Biochemistry Chemistry: General Engineering: Nanotechnology Environmental: Ecosystems Geoscience: Geochemistry
Published

Research explores ways to mitigate the environmental toxicity of ubiquitous silver nanoparticles      (via sciencedaily.com)     Original source 

Researchers have taken a key step toward closing the silver nanoparticles knowledge gap with a study that indicates the particles' shape and surface chemistry play key roles in how they affect aquatic ecosystems.

Chemistry: Thermodynamics Energy: Technology Engineering: Nanotechnology
Published

Transforming common soft magnets into a next-generation thermoelectric conversion materials by 3 minutes heat treatment      (via sciencedaily.com)     Original source 

A research team has demonstrated that an iron-based amorphous alloy, widely used as a soft magnetic material in transformers and motors, can be transformed into a 'transverse' thermoelectric conversion material that converts electric and thermal currents in orthogonal directions, with just a short period of heat treatment. This is the first example that highlights the importance of microstructure engineering in the development of transverse thermoelectric conversion materials, and provides new design guidelines for materials development to realize environmentally friendly power generation and thermal management technologies using magnetic materials.

Chemistry: General Energy: Batteries
Published

Disorder improves battery life      (via sciencedaily.com)     Original source 

What determines the cycle life of batteries? And, more importantly, how can we extend it? An international research team has discovered that local disorder in the oxide cathode material increases the number of times Li-ion batteries can be charged and discharged.