首页> 外文期刊>Journal of Nano Education: A Journal Dedicated to All Aspects of Nano Education in Science, Technology, Engineering, and Medicine >A Hands-on Laboratory and Computational Experience for Nanoscale Materials, Devices and Systems Education for Electronics, Spintronics and Optoelectronics
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A Hands-on Laboratory and Computational Experience for Nanoscale Materials, Devices and Systems Education for Electronics, Spintronics and Optoelectronics

机译:电子,自旋电子学和光电子学的纳米级材料,器件和系统教育的动手实验室和计算经验

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摘要

To enhance the undergraduate and graduate engineering education for nanoscale materials, devices and systems, we report a multi-disciplinary course based on the integration of theory, hands-on laboratory and hands-on computation into a single curriculum. The hands-on laboratory modules span various dimensionalities of nanomaterials as well as applications in logic, memory, and energy harvesting. In the hands-on computational exercises, students simulate the material and the device characteristics, and in some cases, design the experimental process flow to fabricate and characterize the devices and systems. Such a course not only grooms the students for multi-disciplinary collaborative activities in nanoscience and nanoengineering, but also prepares them well for future academic or industrial pursuit in this area.
机译:为了加强对纳米级材料,器件和系统的本科生和研究生工程学教育,我们报告了将理论,动手实验室和动手计算集成到单个课程中的多学科课程。动手操作的实验室模块涵盖了纳米材料的各个维度,以及在逻辑,存储器和能量收集中的应用。在动手计算练习中,学生将模拟材料和设备特性,并在某些情况下设计实验过程流程以制造和表征设备和系统。这样的课程不仅为学生提供了纳米科学和纳米工程方面的多学科合作活动的培训,而且为他们将来在该领域的学术或产业追求做好了充分的准备。

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