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Applications of advanced nanomaterials to microelectronic and photonic devices

机译:先进纳米材料在微电子和光子器件中的应用

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摘要

The scope of the special issue is as follows. Nanomaterials which provide one of the greatest potentials for improving performance and extended capabilities of products in a number of industrial sectors are a new class of materials, having dimensions in the 1~100?nm range. Nanostructures can be divided into zero-dimensional, one-dimensional, and two-dimensional based on their shapes. The recent emphasis in the nanomaterials research is put on 1D nanostructures at the expense of 0D and 2D ones, perhaps due to the intriguing possibility of using them in a majority of short-term future applications. The most successful examples are seen in the microelectronics, where “smaller” has always meant a greater performance ever since the invention of transistors: for example, higher density of integration, faster response, lower cost, and less power consumption. In recent years, applications of advanced nanomaterials on microelectronic and photonic devices have been a highly developing field, due to the flexibility and light weight for daily use, which has the potential to be deployable. This special issue selects many papers about advanced nanomaterials on microelectronic and photonic devices topics. It enables interdisciplinary collaboration between science and engineering technologists in the academic and industrial fields
机译:特刊的范围如下。在许多工业领域中,提供改善产品性能和扩展功能的最大潜力的纳米材料是一类新型材料,其尺寸在1〜100?nm范围内。纳米结构可根据其形状分为零维,一维和二维。纳米材料研究中的最新重点是以1D纳米结构为代价,而以0D和2D纳米结构为代价,这也许是由于在大多数短期未来应用中使用它们的有趣可能性。在微电子学中可以看到最成功的例子,自晶体管发明以来,“较小”一直意味着更高的性能:例如,更高的集成密度,更快的响应,更低的成本和更低的功耗。近年来,由于日常使用的灵活性和轻巧性,先进的纳米材料在微电子和光子器件上的应用一直是一个高度发展的领域。本期特刊选择了许多有关微电子和光子器件主题的有关先进纳米材料的论文。它使科学和工程技术人员可以在学术和工业领域进行跨学科合作

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