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As electronics approach the atomic scale, researchers are increasingly successful at developing atomically thin, virtually two-dimensional materials that could usher in the next generation of computing. Integrating these materials to create necessary circuits, however, has remained a challenge. Researchers have now taken a significant step toward fabricating complex nanoscale electronics: the creation of a p-n heterojunction diode, a fundamental building block of modern electronics.
via Science Daily
As electronics approach the atomic scale, researchers are increasingly successful at developing atomically thin, virtually two-dimensional materials that could usher in the next generation of computing. Integrating these materials to create necessary circuits, however, has remained a challenge. Researchers have now taken a significant step toward fabricating complex nanoscale electronics: the creation of a p-n heterojunction diode, a fundamental building block of modern electronics.
via Science Daily
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