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Categories: Engineering: Biometric, Engineering: Graphene

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Chemistry: General Chemistry: Organic Chemistry Energy: Alternative Fuels Energy: Batteries Engineering: Graphene Geoscience: Environmental Issues Geoscience: Geochemistry
Published

Efficient and mild: Recycling of used lithium-ion batteries      (via sciencedaily.com) 

Lithium-ion batteries (LIBs) provide our portable devices like tablets and mobiles -- and increasingly also vehicles -- with power. As the share of volatile renewable energy needing electricity storage increases, more and more LIBs are needed, lithium prices rise, resources dwindle, and the amount of depleted batteries that contain toxic substances increases. Researchers introduce a novel approach for the recovery of lithium from used LIBs.

Engineering: Graphene Physics: General Physics: Quantum Computing Physics: Quantum Physics
Published

Graphene: Perfection is futile      (via sciencedaily.com) 

It has long been known that graphene has excellent electronic properties. However, it was unclear until now how stable these properties are. Are they destroyed by disturbances and additional effects, which are unavoidable in practice, or do they remain intact? Scientists have now succeeded in developing a comprehensive computer model of realistic graphene structures. It turned out that the desired effects are very stable. Even graphene pieces that are not quite perfect can be used well for technological applications.

Engineering: Graphene Physics: General Physics: Quantum Computing Physics: Quantum Physics
Published

Golden rules for building atomic blocks      (via sciencedaily.com) 

Physicists have developed a technique to precisely control the alignment of supermoiré lattices by using a set of golden rules, paving the way for the advancement of next generation moiré quantum matter.

Computer Science: Quantum Computers Engineering: Graphene Engineering: Nanotechnology Physics: General Physics: Optics Physics: Quantum Computing Physics: Quantum Physics
Published

New quantum device generates single photons and encodes information      (via sciencedaily.com) 

A new approach to quantum light emitters generates a stream of circularly polarized single photons, or particles of light, that may be useful for a range of quantum information and communication applications. A team stacked two different, atomically thin materials to realize this chiral quantum light source.

Energy: Batteries Energy: Technology Engineering: Graphene
Published

New study finds ways to suppress lithium plating in automotive batteries for faster charging electric vehicles      (via sciencedaily.com) 

A new study has found a way to prevent lithium plating in electric vehicle batteries, which could lead to faster charging times.

Chemistry: Organic Chemistry Engineering: Graphene Geoscience: Environmental Issues
Published

Graphene discovery could help generate hydrogen cheaply and sustainably      (via sciencedaily.com) 

Researchers have finally solved the long-standing puzzle of why graphene is so much more permeable to protons than expected by theory.

Computer Science: General Computer Science: Quantum Computers Engineering: Graphene Engineering: Nanotechnology Physics: General Physics: Quantum Computing Physics: Quantum Physics
Published

Carbon-based quantum technology      (via sciencedaily.com) 

Graphene nanoribbons have outstanding properties that can be precisely controlled. Researchers have succeeded in attaching electrodes to individual atomically precise nanoribbons, paving the way for precise characterization of the fascinating ribbons and their possible use in quantum technology.

Chemistry: Organic Chemistry Engineering: Graphene
Published

Human scent receptors could help 'sniff out' nerve gases in new sensor      (via sciencedaily.com) 

By some estimates, the human nose can detect up to a trillion different smells with its hundreds of scent receptors. But even just catching a quick whiff of certain chemicals known as nerve agents can be lethal, even in tiny amounts. Researchers have now developed a sensitive and selective nerve gas sensor using these human scent receptors. It reliably detected a substitute for deadly sarin gas in simulated tests.

Engineering: Biometric Physics: Optics
Published

Engineering team uses diamond microparticles to create high security anti-counterfeit labels      (via sciencedaily.com)     Original source 

Researchers have developed a pioneering technological solution that counterfeiters have no response to.

Engineering: Graphene Physics: Quantum Computing Physics: Quantum Physics
Published

Scientists caught Hofstadter's butterfly in one of the most ancient materials on Earth      (via sciencedaily.com) 

Researchers have revisited one of the most ancient materials on Earth -- graphite, and discovered new physics that has eluded the field for decades.

Engineering: Graphene Engineering: Nanotechnology
Published

Washable, transparent, and flexible OLED with MXene nanotechnology?      (via sciencedaily.com) 

Transparent and flexible displays, which have received a lot of attention in various fields including automobile displays, bio-healthcare, military, and fashion, are in fact known to break easily when experiencing small deformations. To solve this problem, active research is being conducted on many transparent and flexible conductive materials such as carbon nanotubes, graphene, silver nanowires, and conductive polymers.

Energy: Technology Engineering: Graphene Engineering: Nanotechnology
Published

Researchers put a new twist on graphite      (via sciencedaily.com)     Original source 

Researchers report that it is possible to imbue graphite -- the bulk, 3D material found in No. 2 pencils -- with physical properties similar to graphite's 2D counterpart, graphene. Not only was this breakthrough unexpected, the team also believes its approach could be used to test whether similar types of bulk materials can also take on 2D-like properties. If so, 2D sheets won't be the only source for scientists to fuel technological revolutions. Bulk, 3D materials could be just as useful.

Engineering: Biometric Engineering: Nanotechnology
Published

Researchers visualize activity of CRISPR genetic scissors      (via sciencedaily.com)     Original source 

Scientists have developed a new method to measure the smallest twists and torques of molecules within milliseconds. The method makes it possible to track the gene recognition of CRISPR-Cas protein complexes, also known as 'genetic scissors', in real time and with the highest resolution. With the data obtained, the recognition process can be accurately characterized and modeled to improve the precision of the genetic scissors.

Engineering: Graphene
Published

A bright future in eco-friendly light devices, just add dendrimers, cellulose, and graphene      (via sciencedaily.com)     Original source 

Researchers have developed a light-emitting electrochemical cell using dendrimers, a material gaining popularity in the industry. Moreover, the team found that using biomass derived cellulose acetate as the electrolyte retains the cell's long-life span. Combined with a graphene electrode, the cell has the potential to light the way for a future of eco-friendly and flexible light-emitting devices.

Engineering: Graphene Engineering: Nanotechnology Offbeat: Computers and Math
Published

'Electronic skin' from bio-friendly materials can track human vital signs with ultrahigh precision      (via sciencedaily.com)     Original source 

Researchers have used materials inspired by molecular gastronomy to create smart wearables that surpassed similar devices in terms of strain sensitivity. They integrated graphene into seaweed to create nanocomposite microcapsules for highly tunable and sustainable epidermal electronics. When assembled into networks, the tiny capsules can record muscular, breathing, pulse, and blood pressure measurements in real-time with ultrahigh precision.

Engineering: Graphene Engineering: Nanotechnology Offbeat: Computers and Math Offbeat: General Physics: General Physics: Optics
Published

Terahertz-to-visible light conversion for future telecommunications      (via sciencedaily.com)     Original source 

A study demonstrates that graphene-based materials can be used to efficiently convert high-frequency signals into visible light, and that this mechanism is ultrafast and tunable. These outcomes open the path to exciting applications in near-future information and communication technologies.

Engineering: Graphene Physics: General
Published

Shining potential of missing atoms      (via sciencedaily.com)     Original source 

Single photons have applications in quantum computation, information networks, and sensors, and these can be emitted by defects in the atomically thin insulator hexagonal boron nitride (hBN). Missing nitrogen atoms have been suggested to be the atomic structure responsible for this activity, but it is difficult to controllably remove them. A team has now shown that single atoms can be kicked out using a scanning transmission electron microscope under ultra-high vacuum.

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

Aluminium-ion batteries with improved storage capacity      (via sciencedaily.com)     Original source 

Scientists develop positive electrode material using an organic redox polymer based on phenothiazine. Aluminium-ion batteries containing this material stored an unprecedented 167 milliampere hours per gram, outperforming batteries using graphite as electrode material. Aluminium-ion batteries are considered a promising alternative to conventional batteries that use scarce raw materials such as lithium.

Chemistry: Biochemistry Engineering: Graphene
Published

Unveiling the nanoscale frontier: innovating with nanoporous model electrodes      (via sciencedaily.com)     Original source 

Researchers have introduced a next-generation model membrane electrode that promises to revolutionize fundamental electrochemical research.

Chemistry: Inorganic Chemistry Engineering: Graphene
Published

Producing large, clean 2D materials made easy      (via sciencedaily.com)     Original source 

An international team of surface scientists has now developed a simple method to produce large and very clean 2D samples from a range of materials using three different substrates.