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Structure controlling and process scale-up in the fabrication of nano-materials

机译:纳米材料制造中的结构控制和过程扩大

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@@New materials with nanoscale structures attracted more and more international attentions because of its importance in the national economy and people's lives. In recent years, the synthesis of nano-materials had a breakthrough, which develops from the simple synthesis and characterization to the structure controlling at nano-scale as well as forming the composite material system with a specific structure through assembly or other methods. However, the real aim of nano-materials is to develop their practical applications, which needs to solve potential scale-up problems during the nano-material fabrication process. National Science and Technology Council of U.S. pointed out that the engineering magnification and process control of the nano-materials preparation and application is still the key issue to be solved in the future. The chemistry discipline focuses on the research of the material synthesis and control at the micro-scale such as the molecular and atomic level, whereas the traditional chemical engineering discipline pays more attention to the macro characteristics of the preparation system. For the preparation and control of nano-materials, it belongs to the mesoscopic filed between the micro and macro scale. The president of the European Federation of Chemical Engineering, Professor J.-C. Charpentier, pointed out that multi-scale controlling is the developing direction of chemistry and process engineering in future and nano-materials processing and structure control are the very important issues to the chemical engineers. The Key Laboratory for Ultrafine Materials of Ministry of Education of East China University of Science and Technology has long been engaged in the researches on the crystal growth principles, how to control the material structure, as well as the scaleup regulations of the nano-material preparation process for many novel structure nano-materials.
机译:@@具有纳米级结构的新材料吸引了越来越多的国际关注,因为它在国民经济和人民的生活中重要性。近年来,纳米材料的合成具有突破,从简单的合成和表征以纳米级控制的结构,以及通过组装或其他方法形成具有特定结构的复合材料体系。然而,纳米材料的真正目的是开发他们的实际应用,这需要解决纳米材料制造过程中的潜在扩大问题。美国国家科技委员会指出,纳米材料制备和应用的工程放大率和过程控制仍然是未来解决的关键问题。化学纪律致力于研究材料合成和对照在分子和原子水平的微观级别的研究,而传统的化学工程学科则更加关注制备系统的宏观特性。对于纳米材料的制备和控制,它属于微观和宏观尺寸之间的介术。欧洲化学工程联合会主席J.-C教授。 Charpentier指出,多尺度控制是化学和工艺工程的发展方向,纳米材料加工和结构控制是化学工程师的重要问题。中国华东理工大学超细材料重点实验室长期以来一直从事晶体增长原则的研究,如何控制材料结构,以及纳米材料制备的扩展规律许多新型结构纳米材料的方法。

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