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Light-Field Electron Lens Based on Doughnut-Shaped Light Beam

Researchers may use electron microscopy to see microscopic things like viruses, minute structures in semiconductor devices, and even atoms arrayed on a material surface. To achieve such great spatial resolution, the electron beam must be focused down to the size of one atom. ....

Yuuki Uesugi , Alex Smith , Institute Of Multidisciplinary Research For Advanced Materials , Tohoku University , Illustrates Light Field Electron Lens Based , Doughnut Shaped Light , Study Lead Author , Assistant Professor , Multidisciplinary Research , Advanced Materials ,

RIES: Contributing to advancement of life and energy sciences through an interdisciplinary approach


Date Time
RIES: Contributing to advancement of life and energy sciences through an interdisciplinary approach
Seventy-eight years have passed since the establishment of the Research Institute of Ultrashort Waves in 1943. The seed planted on that day has grown into what is currently known as the Research Institute for Electronic Science (RIES) of Hokkaido University. The institute has blossomed and produced achievements in the creation of knowledge.
The mid-term evaluation conducted by Japan’s Ministry of Education, Culture, Sports, Science, and Technology (MEXT) granted RIES the highest grade on a five-point grading scale. In this accomplishment, three key members of RIES joined in the following discussion, reminiscing the institute’s progress, past achievements, and attention shift towards interdisciplinary and sharing their hopes. ....

Japan General , Kou Minoshima , Hiromichi Ohta , Marc Abrahams , Kuniharu Ijiro , Aprilia Agatha Gunawan , Bill Clinton , Hiroaki Misawa , Toshiyuki Nakagaki , J Fraser Stoddart , Vasudevan Pillai Biju , Institute Of Multidisciplinary Research For Advanced Materials , Laboratory For Chemistry , Institute For Materials Chemistry , Nikon Imaging Center At Hokkaido University , Kyushu University , Research Institute Of Ultrashort Waves , Green Nanotechnology Research Center Photo , Institute Of Scientific , Molecular Sciences , Japan Ministry Of Education , Promotion Office For International Alliance , Research Institute Of Applied Electricity , Star Alliance , International Symposium , Japanese Chemical Society Award ,

Nanotechnology Now - Press Release: 3D design leads to first stable and strong self-assembling 1D nanographene wires


Home > Press > 3D design leads to first stable and strong self-assembling 1D nanographene wires
Schematic illustration of hierarchical structures of carbon nanofiber bundles made of bitten warped nanographene molecules.
CREDIT
NINS/IMS
Abstract:
Nanographene is flexible, yet stronger than steel. With unique physical and electronic properties, the material consists of carbon molecules only one atom thick arranged in a honeycomb shape. Still early in technological development, current fabrication methods require the addition of substituents to obtain a uniform material. Additive-free methods result in flimsy, breakable fibers until now.
3D design leads to first stable and strong self-assembling 1D nanographene wires
Tokyo, Japan | Posted on April 6th, 2021 ....

United States , Japan General , Jenny Pirillo , Taishi Nishihara , Kenichiro Itami , Kenta Kato , Nobuhiko Mitoma , Kiyofumi Takaba , Koji Yonekura , Taito Hatakeyama , Yusuke Nakanishi , Lawrencet Scott , Yasutomo Segawa , Takuma Kawada , Yuh Hijikata , Saori Maki Yonekura , Self Assembly , Institute Of Transformative Bio , Nagoya University , Collaboration Center , Itami Molecular Nanocarbon Project At Nagoya University , University Of Nevada , Japan Society For The Promotion Of Science , Wave Inc , Toyoaki Scholarship Foundation , School Of Science ,