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纳米器件加工, Nanodevice and Nanofabrication
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英文english纳米器件加工新书介绍
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“超构纳米电路”,metananocircuitry
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纳米光电子学
(9 篇回复)
自然-纳米技术:扫描探针显微镜操作单个分子的运动
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美国研制“纳米卫星”打造5G网络
(2 篇回复)
中国科学家制造出36个金原子构成的原子皇冠
(5 篇回复)
Nanofabrication method paves way for new optical devices
(4 篇回复)
Researchers demonstrate a flexible, 1-step assembly of nanoscale structures
(1 篇回复)
Obducat secures HDD industry roadmap
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有感于36Au Crown的对称
(2 篇回复)
欧洲纳米电子技术战略展望与发展部署
(2 篇回复)
电光器件可达2纳秒的开关时间EO device achieves 2 ns switching time
(5 篇回复)
纳米超结构电子学:未来电子学前沿
(3 篇回复)
纳米复合材料三维微纳加工研究
(3 篇回复)
用于密集半导体芯片的高速3D检测技术
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”自然:纳米技术“:用分子来搬迁分子Moving molecules within molecules
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Two-photon induced fabrication of gold microstructures in thin films
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Lithographic alignment to site-controlled quantum dots for device integration
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32nm high-k/metal gate process in 2H07
(2 篇回复)
Stretchy electronics
(1 篇回复)
Micro-Lithography and Micro-nanofabrication Technologies
(4 篇回复)
Next-generation RAM: Remembering The Future
(1 篇回复)
Printable, Flexible Carbon-Nanotube Transistors
(1 篇回复)
Carbon nanotubes printed on plastic substrate speed mobility x100
(1 篇回复)
Designing Superoleophobic Surfaces
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通向原子尺度精度制造的纳米技术途径,Nanotechnology roadmap
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NanoRadio
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IBM experimenting with DNA to build chips
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Plumbing Carbon Nanotubes
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Newly Discovered PropertiesImpact The Miniaturization Of Electronic Devices
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A mobile nano-device to record heart beats
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A Better Resonator
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Cheap Nano Solar Cells
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Superlenses and Smaller Computer Chips
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Tiny Living Machines
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“温和”分子机器能以接近平衡状态运转
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UCLA scientists working to create smaller, faster integrated circuits
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Overcoming Challenges in Advanced Semiconductor Imaging & Analysis
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Move over, silicon: Advances pave way for powerful carbon-based electronics
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硅电子自旋输运可达到“马拉松距离”
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纳米器件加工, Nanodevice and Nanofabrication
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