Keynote speech I: Fluctuation control for plasma nanotechnologies

M. Shiratani, K. Koga, G. Uchida, N. Itagaki, K. Kamataki
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Abstract

Recent progress in nano-materials has made them attractive for an increasing number of their applications such as electronics, medical components, fillers, catalysts, and fuel cells. Nanomaterials need structures and components which exhibit novel and significantly improved physical, chemical and biological properties, because of their nanoscale size, and hence fabrication of nanomaterials by bottom-up processes as well as that by top-down ones are required. A wide variety of nano-material and nano-system fabrication methods are required to be developed to realize complex nano-world. Plasma-based fabrication of nanomaterials and nanostructures is widely employed for top-down processes such as ULSI fabrication as well as bottom-up processes such as carbon nanotube production. We are exploring frontier science of interactions between plasmas and nano-interfaces by focusing on novel features such as fluctuations of interactions due to the nanometer scale. Plasma processing based on the science realizes highly precise top-down processes by suppressing fluctuations and well controlled self-organized bottom-up processes by controlling fluctuations. We aim to bring about an explosive development of fabrication technologies of nanomaterials and nanostructures.
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主题演讲一:等离子体纳米技术的波动控制
纳米材料的最新进展使其在电子、医疗部件、填料、催化剂和燃料电池等领域的应用越来越广泛。纳米材料由于其纳米级的尺寸,需要具有新颖和显著改善的物理、化学和生物特性的结构和组件,因此需要自下而上和自上而下的纳米材料制造工艺。为了实现复杂的纳米世界,需要发展各种各样的纳米材料和纳米系统的制造方法。基于等离子体的纳米材料和纳米结构制造广泛应用于自顶向下的工艺,如ULSI制造,以及自底向上的工艺,如碳纳米管生产。我们正在探索等离子体和纳米界面之间相互作用的前沿科学,重点关注纳米尺度下相互作用的波动等新特征。基于科学的等离子体加工通过抑制波动实现了自上而下的高精度过程,通过控制波动实现了自下而上的可控自组织过程。我们的目标是带来纳米材料和纳米结构制造技术的爆炸性发展。
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