Ion Beams in Nanoscience and Technology

Ion Beams in Nanoscience and Technology
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纳米科学与技术中的离子束

DOI:
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发表时间:
2010
期刊:
影响因子:
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通讯作者:
Yanwen Zhang
Yanwen Zhang
中科院分区:
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文献类型:
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作者:
R. Hellborg;H. Whitlow;Yanwen Zhang

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高能离子束辐照是在纳米尺度上进行材料表征和加工的大量强大研究和制造技术的基础。离子注入越来越多地用于使材料具有各种光学、磁性和电学性质,聚焦离子束可用于加工或存款纳米级的材料,和高能离子的散射是一个独特的和定量的工具,用于高速电子和三维纳米结构的过程开发,具有极端的纵横比,用于组织工程和纳米流体实验室。可以使用质子束加工芯片。这本书被提议是一个多作者的工作,由来自世界各地的知名科学家撰写的不同章节,他们在各自的领域有着深厚的知识。我们的目标是产生一个工作,是真实的使用的从业人员,研究人员和学生在整个跨学科跨度的纳米科学和技术。前沿纳米科学和技术的发展,在生物医学,光学材料和高速电子学将被用作路标和锚点,以后续部分,逐步从基本的纳米离子物质相互作用和理论工具,对实际应用形成纳米结构的离子辐照,离子损伤的纳米级表征»以及纳米层之间的相互作用和用高能和低能离子束写入新结构。建议将工作分为五个部分:第一部分纳米科学和技术的趋势第二部分离子与纳米材料的相互作用第三部分纳米材料的离子束特性第四部分离子束纳米材料加工第五部分设备和实践«少
Energetic ion beam irradiation is the basis of a wide plethora of powerful research- and fabrication-techniques for materials characterisation and processing on a nanometre scale. Ion implantation is increasingly employed to tailor materials to various optical, magnetic and electrical properties, focused ion beams can be used to machine away or deposit material on a scale of nanometres, and the scattering of energetic ions is a unique and quantitative tool for process development in high speed electronics and 3-D nanostructures with extreme aspect ratios for tissue engineering and nano-fluidics lab-on-a-chip may be machined using proton beams. This book is proposed to be a multi-author work with different chapters written by established scientists from around the world that have a deep knowledge in their respective fields. The goal is to produce a work that is of real use to practitioners, researchers and students across the whole cross-disciplinary span of nanoscience and technology. Frontline nanoscience and technology developments in bio-medicine, optical materials and high-speed electronics will be used as a signpost and anchor point to subsequent sections that move progressively from fundamentals of nanoscale ion-matter interactions and theoretical tools towards the practical applications for forming nanostructures by ion irradiation, nanoscale characterisation of ion-damagemore » and the interactions between nanolayers and writing novel structures with high and low energy ion beams. It is to propose to organise the work in five sections: Part I Trends in nanoscience and technology Part II Interaction of ions with materials on a nanoscale Part III Ion beam characterisation of nanoscale materials Part IV Nanoscale materials processing with ion beams Part V Equipment and practice« less