Skoltech researchers and their colleagues from Ludwig Maximilian University of Munich, Germany, Nanjing University of China, ...
Interesting Engineering on MSN
Graphene material that folds, moves, and senses could power next-gen soft robots
McGill University engineers have developed ultra-thin materials that can move, fold, and reshape themselves, ...
Researchers develop hybrid kiri-origami structures that enable the fabrication of high-performance stretchable electronics using non-stretchable materials. (Nanowerk News) Stretchable electronics are ...
Origami structures were folded from flat sheets of direct-printed titanium hydride ink, a technique pioneered by University of Illinois researchers. (Image Courtesy of Bok Yoep Ahn) Origami structures ...
Originally inspired by graphene, a new class of atomically thin semiconductor materials — such as molybdenum disulfide — promises to enable electronic and optical devices that are smaller and more ...
Tech Xplore on MSN
Shapeshifting materials could power next generation of soft robots
McGill University engineers have developed new ultra-thin materials that can be programmed to move, fold and reshape ...
Origami is a traditional Japanese art form where people create intricate designs by folding paper, but the technique can also keep people alive. Science and engineering professor Richard James and ...
Three DNA origami templates were designed so that quantum dots would arrange themselves (a) in the corners, (b) diagonally (three dots), and (c) in a line (four dots). NIST researchers found that ...
One of the challenges of fighting pancreatic cancer is finding ways to penetrate the organ's dense tissue to define the margins between malignant and normal tissue. A new study uses DNA origami ...
Kiri-origami structures combine the benefits of both origami and kirigami, incorporating their advantages while canceling their disadvantages, enabling the development of high-performance, stretchable ...
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