Researchers developed a method that gradually adds and removes atoms in simulations, enabling realistic modeling of crystal defects that affect material strength.
Most materials, especially metals and ceramics, are crystals. Their atoms are arranged in three-dimensional lattices that repeat the same exact pattern, over and over again. But there's a well-known ...
The types of glass that we encounter in everyday life, such as window glass or smartphone screens, are disordered solids. This means that they consist of particles locked in place, like those in ...
Defect-filled lead-halide perovskites rival silicon solar cells because domain walls inside the material separate and guide charges. Researchers visualized these charge-transport networks using a ...
Interesting Engineering on MSN
US scientists simulate elusive ideal glass that behaves mechanically like a crystal
Scientists have created the first computer model of an “ideal glass,” a theoretical material ...
Most materials, especially metals and ceramics, are crystals. Their atoms are arranged in three-dimensional lattices that repeat the same exact ...
A one-step 3D-printing method builds a binder-free ZrO 2 /Cu metamaterial electrode that quickly detects glucose without enzymes. Study: A One-Step 3D-Printing Fabrication of ZrO 2 /CuMetamaterial ...
The discovery of bright yet stable pigments is vanishingly rare, making them hugely valuable. Now chemist Mas Subramanian is unpicking the atomic code of colour and homing in on our most-wanted hue ...
LLMs can compose poetry or write essays. You can specify that these compositions are “in the style of” a noted poet or author. You can ask an LLM to generate videos whose characters look and speak ...
The Fraunhofer Institute for Laser Technology ILT has published a technical article on the production of solid-state batteries. In it, the Aachen-based ...
Igor Tudor is a specialist in fixing broken teams — but Tottenham look to have gotten worse in his three games in charge ...
Morning Overview on MSN
New 4D-STEM hack reveals atomic structures in crowded nanocrystals
Researchers at Lawrence Berkeley National Laboratory have developed a 4D-STEM workflow that can isolate and solve atomic structures from individual nanocrystals buried inside dense, tangled clusters, ...
Some results have been hidden because they may be inaccessible to you
Show inaccessible results