面向可编程自组装dna -碳纳米管的设计:纳米生物电子学的一种方法

J. Seminario, L. A. Agapito, H. Figueroa
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引用次数: 7

摘要

最近,生物电子学已经成为一种独特的思想融合,导致了新的生物器件的发展,这些器件将蛋白质、脂质和dna等生物化合物与电子传感器电连接起来。这一研究领域的主要发展方向是生物传感器和生物材料。此外,化学、生物学和电子学跨学科研究的最新趋势导致了一个新的研究领域:生物分子电子学。这个有前途的科学领域是分子电子学的一部分,分子电子学旨在发展新的电子技术,并将克服硅CMOS电子学面临的缩小问题,其长期目标是建立具有高度缩小特征尺寸,更高性能和增强信息处理能力的分子计算机。在这项初步工作中,我们提出了一种实现可编程生物分子单元的新方法,该方法将利用DNA分子的自组装和选择性特性以及碳纳米管(CNT)的多功能性来构建可扩展的计算系统,这将证明生物分子计算机的可行性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards the design of programmable self-assembled DNA-carbon nanotubes: an approach to nanobiotronics
Recently, bioelectronics has become a unique fusion of ideas leading to the development of new bio-devices, which electrically interface biological compounds such as proteins, lipids, and DNAs with electronic transducers. The major developments in this research field are biosensors and biomaterials. In addition, recent trends in interdisciplinary studies in chemistry, biology and electronics have led to a new field of research: biomolecular electronics. This promising scientific field is part of a more general approach, molecular electronics, which aims to the development of new electronic technologies, and will overcome the problem of downscaling silicon CMOS electronics faces, having the long-term goal of building a molecular computer with highly reduced feature sizes, higher performance and increased information processing capabilities. In this preliminary work, we propose a new approach for the realization of a programmable bio-molecular units that will take advantage of the self-assembly and selectivity properties of DNA molecules and the versatility of carbon nanotubes (CNT) to build scalable computing systems that will prove the feasibility of the biomolecular computer.
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