Researchers at Oak Ridge National Laboratory have used specialized tools to study materials at the atomic scale and analyze ...
Researchers in China have developed an electrical imaging technique using three-dimensional (3D) tomographic conductive atomic force microscopy (TC-AFM) to go beyond indirect characterization of ...
An atomic force microscope tip writes data in stable ferroelectric structures, enabling reliable multistate storage at ...
Cecilia Van Cauwenberghe explains how to measure the future using nanoscale metrology and discusses the global competition ...
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Peering inside perovskite: 3D imaging reveals how passivation boosts solar cell efficiency
Perovskite solar cells have garnered widespread attention as a low-cost, high-efficiency alternative to conventional silicon ...
Researchers at Oak Ridge National Laboratory used specialized tools to study materials at the atomic scale and analyze ...
Two related discoveries detailing nanocrystalline mineral formation and dynamics have broad implications for managing nuclear ...
The research introduces a 3D approach to visualize electrical properties in perovskite films, paving the way for enhanced ...
A new 3D nanoscale imaging method now reveals how different passivation strategies reshape internal charge pathways offering ...
The meninges act as a key mechano-biological interface—dissipating external forces, supporting neuroimmune homeostasis, and dynamically regulating the ...
HANGZHOU, Jan. 4 (Xinhua) -- A group of Chinese researchers has developed a three-dimensional (3D) electrical imaging method that directly reveals how defect passivation treatment improves the quality ...
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