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首页> 外文期刊>Journal of Sol-Gel Science and Technology >Considerations about the sol-gel process:From the classical sol-gel route to advanced chemical nanotechnologies
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Considerations about the sol-gel process:From the classical sol-gel route to advanced chemical nanotechnologies

机译:关于溶胶-凝胶工艺的注意事项:从经典的溶胶-凝胶路线到先进的化学纳米技术

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This paper was given on occasion of receiving the first Life Time Award by the International Society on Sol-Gel Science and Technology.Its intention is to provide an insight on the development of this field,its driving forces and especially on its impact on application and industrial technologies.The motivation of the work carried out in the last decades is that in the early days of the sol-gel technologies,where this route started to interest industry as well as scientists,the author got interested in a field which was clearly application-driven and strongly anchored in the material scientist community rather than in fundamental chemistry.If one is talking about application-oriented technologies,of course,markets and industrial needs have to be taken into consideration,because the restrictions or bottle-necks,but also chances provided by economical needs strongly may govern the field.In opposition to these fields,only driven by science,may not have these restrictions as far as it is possible to raise funds for the scientific work.For this reason,the attempt is made to point out the connections between application and science in the sol-gel field.Since I am working in the sol-gel field since 1975,strongly focused on industrial applications,it should be understandable that many of my own development examples are used to demonstrate this way.Another problem,of course,is connected to the sol-gel field:This is a question of appropriate definitions as well as to draw a clear borderline of the field.Especially in the last decade,the connection of sol-gel materials to nanostruc-tured materials has become closer,so that it is difficult to clearly divide these fields.On the other hand,the fabrication of nanoparticles by hydrolysis and condensation processes or controlled precipitation processes can be defined as a sol-gel technology,but in many cases is just not done.This leads to the fact that in many areas,sol-gel types of processes are used,but called different.Due to the fact that the properties of small particles either in solution or dispersed in an appropriate matrix show highly interesting material properties,it would be desirable that the sol-gel community would try to interact stronger with these developments (e.g.the "particle" community).This also might include a focus of the sol-gel area a little bit more back to the routes,to material science development and engineering.According to my opinion,this would be a very interesting supplement for the field as it is represented today.
机译:本文是在获得国际溶胶-凝胶科学技术学会颁发的“终身奖”之际给出的。其目的是提供对该领域的发展,驱动力,尤其是其对应用和应用的影响的见解。在过去的几十年中进行的工作的动机是,在溶胶-凝胶技术的早期,这种途径开始引起工业界和科学家的兴趣,作者对显然是应用领域感兴趣。的驱动力,并牢固地扎根于材料科学家社区,而不是基础化学领域。如果人们谈论的是面向应用的技术,那么由于限制或瓶颈,当然必须考虑市场和工业需求。经济需求提供的机会可能会主导这个领域。与这些领域相反,仅由科学驱动,就可能不受这些限制。因此,我们试图指出溶胶凝胶领域的应用与科学之间的联系。自1975年以来我一直从事溶胶凝胶领域的工作,因此我专注于工业在应用程序中,我自己的许多开发示例都用来演示这种方式,这是可以理解的。当然,另一个问题与sol-gel领域有关:这是一个适当定义的问题,同时也有一个明确的界限特别是在最近十年中,溶胶-凝胶材料与纳米结构材料之间的联系越来越紧密,因此很难清楚地划分这些领域。另一方面,通过水解和缩合制备纳米颗粒可以将过程或受控的沉淀过程定义为溶胶-凝胶技术,但在许多情况下还没有完成。这导致以下事实:在许多地区,使用了溶胶-凝胶类型的过程,但被称为不同的过程。事实上,溶液中或分散在适当基质中的小颗粒的特性显示出非常令人感兴趣的材料特性,因此,溶胶-凝胶社区将试图与这些发展(例如“粒子”社区)更强地相互作用,这一点是合乎需要的。可能还包括溶胶凝胶领域的重点,再回到材料科学的开发和工程领域。根据我的观点,这对于今天的领域将是一个非常有趣的补充。

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