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Nanofabrication: Conventional and nonconventional methods [Review]

机译:纳米加工:常规方法和非常规方法[综述]

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Nanofabrication is playing an ever increasing role in science and technology on the nanometer scale and will soon allow us to build systems of the same complexity as found in nature. Conventional methods that emerged from microelectronics are now used for the fabrication of structures for integrated circuits, microelectro-mechanical-systems, microoptics and microanalytical devices. Nonconventional or alternative approaches have changed the way we pattern very fine structures and have brought about a new appreciation of simple and low-cost techniques. We present an overview of some of these methods, paying particular attention to those which enable large-scale production of lithographic patterns. We preface the review with a brief primer on lithography and pattern transfer concepts. After reviewing the various patterning techniques, we discuss some recent application issues in the fields of microelectronics, optoelectronics, magnetism as well as in biology and biochemistry. [References: 243]
机译:纳米制造在纳米级科学技术中发挥着越来越重要的作用,并将很快使我们能够构建与自然界相同的复杂性的系统。微电子学中出现的传统方法现在用于制造集成电路,微机电系统,微光学和微分析设备的结构。非常规或替代方法改变了我们对非常精细的结构进行图案化的方式,并带来了对简单且低成本技术的新认识。我们对其中一些方法进行了概述,特别注意那些能够大规模生产光刻图案的方法。我们以有关光刻和图案转移概念的简短入门作为本综述的开头。在回顾了各种构图技术之后,我们讨论了微电子,光电子,磁性以及生物学和生物化学领域的一些近期应用问题。 [参考:243]

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