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Methodology for developing a functional multiscale architecture model system towards future integrated circuits.

机译:开发面向未来集成电路的功能多尺度体系结构模型系统的方法论。

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摘要

Detection of the biochemical species in the environmental pollution, industrial emission monitoring, medical diagnosis, public security, agriculture and a variety of industries has resulted in the emerging need for a generation of high density nanostructured sensor arrays. The fundamental two terminal and three terminal device components because of their potential for specificity eventually have to be integrated into miniaturized and portable nanoarray sensors. One of the key components in these nanosensors is the development of building functional building blocks that improve device performance capabilities. This research is focused on methodology for developing fundamental, functional, multiscale architecture model system for generating high density nanoscale two terminal structures for future integrated circuits for sensor applications. The key idea is to design and characterize a nanomaterial junction array that can demonstrate diode like electrical behavior. A hybrid methodology for fabricating this basic nanoelectronic building block, its performance capabilities and its limitations is presented. A soft lithography and standard photolithography techniques are integrated in assembling nanomaterial composites of p- and n- type material to form a junction, which are characterized by using standard electrical characterization methods.
机译:在环境污染,工业排放监测,医疗诊断,公共安全,农业和各种行业中对生化物种的检测,导致了对新一代高密度纳米结构传感器阵列的需求。由于具有潜在的特异性,基本的两个终端和三个终端设备组件最终必须集成到小型化和便携式纳米阵列传感器中。这些纳米传感器的关键组件之一是开发可提高设备性能的功能性构建块。这项研究的重点是开发基本的,功能的,多尺度的体系结构模型系统的方法,该系统可为未来的传感器应用集成电路生成高密度的纳米尺度的两个端子结构。关键思想是设计和表征可以证明二极管类似电行为的纳米材料结阵列。提出了一种制造这种基本纳米电子构件的混合方法,其性能和局限性。在组装p型和n型材料的纳米材料复合材料以形成结时,将软光刻技术和标准光刻技术集成在一起,这可以通过使用标准的电表征方法来表征。

著录项

  • 作者

    Yadav, Yamini.;

  • 作者单位

    Portland State University.;

  • 授予单位 Portland State University.;
  • 学科 Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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