Feature Channels: Materials Science

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Released: 1-Jul-2021 8:05 AM EDT
Composing New Energy Systems
Empa, Swiss Federal Laboratories for Materials Science and Technology

Modern, decentralized energy systems are a highly complex matter. Planning them in an optimal and cost-efficient way is a major challenge for energy planners. Sympheny, an Empa spin-off, offers a software that helps planners to find the most suitable energy concept for a building, neighborhood or even an entire city, and thus to meet their sustainability and energy efficiency goals.

Released: 30-Jun-2021 10:25 AM EDT
The Future of Smart Outdoor Dining Is Being Built With Upcycled Water Bottles
Rensselaer Polytechnic Institute (RPI)

A new project called Friendship Cabins, designed by researchers at the Center for Architecture Science and Ecology (CASE) at Rensselaer Polytechnic Institute, offer restaurants in NYC safer dining experiences for their customers and servers while built with environmentally friendly bottles.

   
Released: 30-Jun-2021 10:10 AM EDT
Spaghetti, Windowsill, and LEGO: On-the-Fly Composites Modeling
Michigan Technological University

Just as modeling is a close estimate of real-world processes, so too are verbal explanations of such nuanced arithmetic. Trisha Sain from Michigan Tech explores multiscale physics by thinking about the Lego bricks in her living room, the windows of skyscrapers and cooking a feast.

Released: 29-Jun-2021 2:10 PM EDT
Longer-Lived Lithium-Metal Battery Marks Step Forward for Electric Vehicles
Pacific Northwest National Laboratory

Researchers have increased the lifetime of a promising electric vehicle battery to a record level.

Released: 29-Jun-2021 1:05 PM EDT
UB's Paras Prasad Receives Prestigious IEEE Award
University at Buffalo

Paras Prasad, executive director of the Institute for Lasers, Photonics and Biophotonics at the University at Buffalo, is the recipient of the 2021 IEEE Photonics Society William Streifer Scientific Achievement Award.

Released: 29-Jun-2021 10:15 AM EDT
New 2D Alloy Combines Five Metals, Breaks Down CO2
Washington University in St. Louis

A new, two-dimensional material from the lab of Rohan Mishra is the first such material to be synthesized and purposefully used.

Released: 29-Jun-2021 7:15 AM EDT
This Crystal Impurity Is Sheer Perfection
Lawrence Berkeley National Laboratory

Scientists at Berkeley Lab and UC Berkeley have developed a nanoparticle composite that grows into 3D crystals. The new 3D-grown material could speed up production and eliminate errors in the mass manufacturing of nanoscale photonics for smart buildings or actuators for robotics.

Released: 28-Jun-2021 9:30 AM EDT
Uncovering Hidden Local States in a Quantum Material
Brookhaven National Laboratory

States of local broken symmetry at high temperature—observed in several materials, including one with a metal-insulator transition, an iron-based superconductor, and an insulating mineral part of the Earth's upper mantle—may enable the technologically relevant properties arising at much-lower temperature.

Released: 25-Jun-2021 10:40 AM EDT
Argonne researchers use AI to optimize a popular material coating technique in real time
Argonne National Laboratory

Argonne researchers have demonstrated that AI approaches can be used to transform a vital layering technique for semiconductors.

Released: 25-Jun-2021 7:05 AM EDT
Putting Functional Proteins in Their Place
Brookhaven National Laboratory

Using DNA, scientists organized bioactive proteins in desired 2-D and 3-D ordered arrays—promising for structural biology, biomedicine, and more.

Released: 24-Jun-2021 2:15 PM EDT
Setting Gold and Platinum Standards Where Few Have Gone Before
Sandia National Laboratories

Like two superheroes finally joining forces, Sandia National Laboratories’ Z machine — generator of the world’s most powerful electrical pulses — and Lawrence Livermore National Laboratory’s National Ignition Facility — the planet’s most energetic laser source — in a series of 10 experiments have detailed the responses of gold and platinum at pressures so extreme that their atomic structures momentarily distorted like images in a fun-house mirror.

Released: 24-Jun-2021 10:10 AM EDT
Researchers World-Wide Find Great Value in ReaxFF Reactive Force Field
Penn State Materials Research Institute

More than 1,600 researchers in six of the world’s seven continents have requested parameters for a ReaxFF reactive force field developed by a Penn State researcher and used as a valuable research tool in fields as varied as biomaterials, polymers, batteries and 3D printing.

Released: 24-Jun-2021 9:25 AM EDT
Materials Researcher Honored with ACerS's 2021 Orton Lectureship
Penn State Materials Research Institute

The American Ceramics Society (ACerS) has selected Clive Randall, director of the Materials Research Institute and distinguished professor of materials science and engineering, to give the 2021 Edward Orton, Jr. Memorial Lecture at the 2021 ACerS’s Annual Meeting.

Released: 23-Jun-2021 5:10 PM EDT
Microspheres Quiver When Shocked
Columbia University School of Engineering and Applied Science

A challenging frontier in science and engineering is controlling matter outside of thermodynamic equilibrium to build material systems with capabilities that rival those of living organisms. Research on active colloids aims to create micro- and nanoscale “particles” that swim through viscous fluids like primitive microorganisms. When these self-propelled particles come together, they can organize and move like schools of fish to perform robotic functions, such as navigating complex environments and delivering “cargo” to targeted locations.

Released: 23-Jun-2021 9:30 AM EDT
Magneto-Thermal Imaging Brings Synchrotron Capabilities to the Lab
Cornell University

Coming soon to a lab tabletop near you: a method of magneto-thermal imaging that offers nanoscale and picosecond resolution previously available only in synchrotron facilities.

Released: 23-Jun-2021 5:05 AM EDT
Scientists Obtain Magnetic Nanopowder for 6G Technology
Moscow Institute of Physics and Technology (MIPT)

Material scientists have developed a fast method for producing epsilon iron oxide and demonstrated its promise for next-generation communications devices. Its outstanding magnetic properties make it one of the most coveted materials, such as for the upcoming 6G generation of communication devices and for durable magnetic recording. The work was published in the Journal of Materials Chemistry C, a journal of the Royal Society of Chemistry.

Released: 22-Jun-2021 5:55 PM EDT
How to Make Lithium-ion Batteries Invincible
Lawrence Berkeley National Laboratory

Berkeley Lab scientists have made significant progress in developing battery cathodes using a new class of materials that provide batteries with the same if not higher energy density than conventional lithium-ion batteries but can be made of inexpensive and abundant metals. Known as DRX, which stands for disordered rocksalts with excess lithium, this novel family of materials was invented less than 10 years ago and allows cathodes to be made without nickel or cobalt.

Released: 22-Jun-2021 12:35 PM EDT
Self-assembly of stimuli-responsive coiled-coil fibrous hydrogels
NYU Tandon School of Engineering

Jin Kim Montclare, professor of chemical and biomolecular engineering led a team who previously reported a responsive hydrogel formed using a coiled-coil protein. The team expanded their studies to identify the gelation of Q protein at distinct temperatures and pH conditions.

Released: 21-Jun-2021 3:40 PM EDT
Modeling A Circular Economy For Electronic Waste
University of Pittsburgh

Think about how many different pieces of technology the average household has purchased in the last decade.

Released: 21-Jun-2021 3:30 PM EDT
New method for molecular functionalization of surfaces
University of Münster

One vision that is currently driving material scientists is to combine organic molecules (and their diverse functionalities) with the technological possibilities offered by extremely sophisticated semiconductor electronics.

17-Jun-2021 10:35 AM EDT
Inkjet Printing “Impossible Materials”
Tufts University

Engineers developed inexpensive methods to make “impossible materials” that interact in unusual ways with microwave energy. Thin film polymers inkjet printed with tiny component patterns collect or transmit energy with much greater selectivity, sensitivity, and power than conventional materials.

Released: 21-Jun-2021 8:05 AM EDT
Alex Harris Named Energy Sciences Director at Brookhaven Lab
Brookhaven National Laboratory

UPTON, NY—The U.S. Department of Energy’s (DOE) Brookhaven National Laboratory has named Alex Harris as Director of the Lab’s Energy Sciences Department, effective May 1, 2021. In his new position, Harris will manage several divisions of the Laboratory, including the Center for Functional Nanomaterials, the Chemistry Division, and the Condensed Matter Physics and Materials Science Division.

Released: 18-Jun-2021 4:35 PM EDT
Surprising spider hair discovery may inspire stronger adhesives
Frontiers

Just how do spiders walk straight up -- and even upside-down across -- so many different types of surfaces? Answering this question could open up new opportunities for creating powerful, yet reversible, bioinspired adhesives.

Released: 18-Jun-2021 3:40 PM EDT
Imaging at the tip of a needle
University of Exeter

Scientists have developed a new technique that could revolutionise medical imaging procedures using light.

Released: 18-Jun-2021 4:05 AM EDT
Atomic-scale tailoring of graphene approaches macroscopic world
University of Vienna

Properties of materials are often defined by imperfections in their atomic structure, especially when the material itself is just one atom thick, such as graphene. Researchers at the University of Vienna have now developed a method for controlled creation of such imperfections into graphene at length scales approaching the macroscopic world. These results, confirmed by atomically resolved microscope images and published in the journal Nano Letters, serve as an essential starting point both for tailoring graphene for applications and for the development of new materials.

Released: 17-Jun-2021 1:45 PM EDT
Changing a 2D Material’s Symmetry Can Unlock Its Promise
Rensselaer Polytechnic Institute (RPI)

In research published today in Nature Nanotechnology, a team of materials scientists and engineers, led by Jian Shi, an associate professor of materials science and engineering at Rensselaer Polytechnic Institute, used a strain gradient in order to break inversion symmetry, creating a novel optoelectronic phenomenon in the promising material molybdenum disulfide (MoS2) — for the first time.

16-Jun-2021 10:05 AM EDT
Argonne and Oak Ridge National Laboratories Award Codeplay Software to Further Strengthen SYCL™ Support Extending the Open Standard Software for AMD GPUs
Argonne National Laboratory

Argonne National Laboratory (Argonne) in collaboration with Oak Ridge National Laboratory (ORNL), has awarded Codeplay a contract implementing the oneAPI DPC++ compiler, an implementation of the SYCL open standard software, to support AMD GPU-based high-performance compute (HPC) supercomputers.

Released: 16-Jun-2021 6:20 PM EDT
An Ally for Alloys
Pacific Northwest National Laboratory

Machine learning techniques are accelerating the development of stronger alloys for power plants, which will yield efficiency, cost, and decarbonization benefits.

Released: 16-Jun-2021 2:40 PM EDT
Computers Help Researchers Find Materials to Turn Solar Power Into Hydrogen
Penn State Institute for Computational and Data Sciences

A Penn State-led team of researchers report they have taken a step toward overcoming the challenge of inexpensive hydrogen production by using supercomputers to find materials that could help accelerate hydrogen separation when water is exposed to light, a process called photocatalysis.

Released: 16-Jun-2021 11:55 AM EDT
‘Wonder material’ can be used to detect COVID-19 quickly, accurately
University of Illinois Chicago

Researchers at the University of Illinois Chicago have successfully used graphene — one of the strongest, thinnest known materials — to detect the SARS-CoV-2 virus in laboratory experiments.

Released: 15-Jun-2021 6:05 PM EDT
Internships Put Futures in Flight
Pacific Northwest National Laboratory

PNNL intern Ki Ahn spent this past year as an undergraduate at PNNL gaining hands-on research experience in clean energy storage technologies for vehicles and aviation. Ahn is enrolling in Stanford University this fall to finish his bachelor’s degree. With plans to major in mechanical engineering or computer science, he wants to explore how future aircraft technologies can be designed to reduce harmful environmental effects.

Released: 15-Jun-2021 4:05 PM EDT
Efficient Dehumidifier Makes Air Conditioning a Breeze
Pacific Northwest National Laboratory

New energy-efficient dehumidifier technology holds promise to reduce energy consumption in residential A/C systems and increase the range of electric vehicles.

Released: 15-Jun-2021 2:45 PM EDT
Can Artificial Intelligence Open New Doors for Materials Discovery?
Argonne National Laboratory

An Argonne engineer applied a specific type of artificial intelligence to the problem of how to predict material structures by only knowing some of their properties. This first-of-its-kind discovery led to further insights into the long-term durability of nuclear materials.

Released: 14-Jun-2021 3:10 PM EDT
A Keen Eye Behind the Microscope
Pacific Northwest National Laboratory

PNNL's Dongsheng Li’s crystal formation research helped reveal why nanoparticles sometimes self-assemble into five-sided shapes. The discovery will potentially be useful in medical research, electronics, and other applications.

Released: 11-Jun-2021 12:10 PM EDT
Swiss-cheese Design Could Help Scientists Harness the Power of the Sun
Princeton Plasma Physics Laboratory

The big holes in Swiss cheese help make it a tasty treat. Now, scientists at PPPL are adding tiny, Swiss-cheese-type holes to components to improve the process of bringing to Earth the fusion energy that powers the sun and stars.

Released: 11-Jun-2021 11:10 AM EDT
Researchers discover a key cause of energy loss in spintronic materials
University of Minnesota College of Science and Engineering

A study led by University of Minnesota Twin Cities researchers uncovered a property of magnetic materials that will allow engineers to develop more efficient spintronic devices in the future. Spintronics focuses on using the magnetic “spin” property of electrons instead of their charge, which improves the speed and efficiency of devices used for computing and data storage.

Released: 10-Jun-2021 4:40 PM EDT
'Vegan spider silk' provides sustainable alternative to single-use plastics
University of Cambridge

Researchers have created a plant-based, sustainable, scalable material that could replace single-use plastics in many consumer products.

Released: 10-Jun-2021 4:05 AM EDT
NEST to Open its Virtual Doors
Empa, Swiss Federal Laboratories for Materials Science and Technology

The research and innovation building NEST of Empa and Eawag can now be visited virtually at any time and from anywhere in the world. The launch of the virtual NEST tour is a further step towards closing the gap between laboratory research and market entry. By making numerous innovations, developed and demonstrated at NEST, accessible to a much broader and more international audience, the virtual NEST is making a significant contribution to ensuring that sustainable innovations in the building and energy sector can spread faster and thus gain a foothold in the construction industry.

Released: 8-Jun-2021 10:20 AM EDT
What will happen to the COVID-19 plexiglass barriers?
Iowa State University

Iowa State students, faculty and staff are planning for what will happen to the approximately 500 plexiglass barriers that were erected to protect public health during the COVID-19 pandemic.

   
Released: 7-Jun-2021 3:10 PM EDT
Stabilizing gassy electrolytes could make ultra-low temperature batteries safer
University of California San Diego

A new technology could dramatically improve the safety and performance of lithium-ion batteries that operate with gas electrolytes at ultra-low temperatures. By keeping electrolytes from vaporizing, the technology can prevent pressure buildup inside the battery that leads to swelling and explosions.

7-Jun-2021 11:00 AM EDT
A quantum step to a heat switch with no moving parts
Ohio State University

Researchers have discovered a new electronic property at the frontier between the thermal and quantum sciences in a specially engineered metal alloy – and in the process identified a promising material for future devices that could turn heat on and off with the application of a magnetic “switch.”

Released: 7-Jun-2021 8:05 AM EDT
Lighting Up Ultrafast Magnetism in a Metal Oxide
Brookhaven National Laboratory

Scientists studied what happens when very short pulses of laser light strike a magnetic material. Understanding how magnetic correlations change over short timescales is the first step in being able to control magnetism for applications.

Released: 3-Jun-2021 3:45 PM EDT
Engineers create a programmable fiber
Massachusetts Institute of Technology (MIT)

MIT researchers have created the first fiber with digital capabilities, able to sense, store, analyze, and infer activity after being sewn into a shirt.

Released: 3-Jun-2021 2:40 PM EDT
Scientists Discover New Approach to Stabilize Cathode Materials
Brookhaven National Laboratory

UPTON, NY—A team of researchers led by chemists at the U.S. Department of Energy’s (DOE) Brookhaven National Laboratory has studied an elusive property in cathode materials, called a valence gradient, to understand its effect on battery performance. The findings, published in Nature Communications, demonstrated that the valence gradient can serve as a new approach for stabilizing the structure of high-nickel-content cathodes against degradation and safety issues.

Released: 3-Jun-2021 11:15 AM EDT
The biodegradable battery
Empa, Swiss Federal Laboratories for Materials Science and Technology

The number of data-transmitting microdevices, for instance in packaging and transport logistics, will increase sharply in the coming years. All these devices need energy, but the amount of batteries would have a major impact on the environment. Empa researchers have developed a biodegradable mini-capacitor that can solve the problem. It consists of carbon, cellulose, glycerin and table salt. And it works reliably.

27-May-2021 11:05 PM EDT
Scientists make powerful underwater glue inspired by barnacles and mussels
Tufts University

Scientists replicate the molecular properties of the natural cement used by barnacles and mussels to create a powerful adhesive using silk protein. The new adhesive can work well in both dry and underwater conditions.

Released: 2-Jun-2021 11:00 AM EDT
Saving Lives: India’s Technical Textile Revolution Paved Way for COVID-19 Response
Texas Tech University

To help the field grow, Seshadri Ramkumar – now a professor of advanced materials – has partnered with the Indian government and technical textiles organizations around the world to host conferences in India since the early 2000s.

Released: 2-Jun-2021 6:05 AM EDT
Decontaminating N95 masks for reuse
Lawrence Livermore National Laboratory

Scientists at Lawrence Livermore National Laboratory (LLNL) have determined that heating N95 respirators up to 75 degrees Celsius for 30 minutes deactivates a surrogate coronavirus without compromising the device’s fit and its ability to filter airborne particles.

Released: 2-Jun-2021 5:05 AM EDT
Acoustic solutions made from natural fibres can reduce buildings’ carbon footprints
Aalto University

Researchers at Aalto University, in collaboration with Finnish acoustics company Lumir, have now studied how the acoustic solutions around us could become more eco-friendly, with the help of cellulose fibres. The acoustic insulation market is already expected to hit 15 billion USD by 2022 as construction firms and industry pay more attention to sound environments.



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