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作 者:Nan Yu Stuart Reid Rebecca Cheung Vasileios Koutsos
机构地区:[1]Institute for Materials and Processes,The University of Edinburgh,Edinburgh EH89FB,UK [2]SUPA Department of Biomedical Engineering,The University of Strathclyde,Glasgow G11QE,UK [3]Institute for Integrated Micro and Nano Systems,The University of Edinburgh,Edinburgh EH89FB,UK
出 处:《Nanomanufacturing and Metrology》2022年第3期189-190,共2页纳米制造与计量(英文)
摘 要:Nanomanufacturing(NM),developed over the past three decades,bridges nanosciencediscoveries tonanotechnology products by scaled-up,reliable,and cost-effective manufacturing materials,structures,devices,and systems at the nanoscale(1-100 nm).At this scale,physical and chemical properties of the materials and tools have been dominated by classical Newtonian mechanics,although quantum confinementeffects become increasinglyobservable.Anumber of top-down and bottom-up approaches were developed,including nanomechanical machining,nanolithography,energy beam machining,deposition and etching,nanoprinting,nano assembly,nano replication,etc.[1].These techniques enabled a range of applications from medical imaging and renewable energy to sensor devices and quantum computing.
关 键 词:BRIDGES PRINTING MACHINING
分 类 号:TB383[一般工业技术—材料科学与工程]
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