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分子与生物电子器件的设计及功能

Design and function of molecular and bioelectronics devices.

作者信息

Krstic Predrag, Forzani Erica, Tao Nongjian, Korkin Anatoli

机构信息

Oak Ridge National Laboratory.

出版信息

Nanotechnology. 2007 Oct 24;18(42):420201. doi: 10.1088/0957-4484/18/42/420201. Epub 2007 Sep 13.

DOI:10.1088/0957-4484/18/42/420201
PMID:21730433
Abstract

Further rapid progress of electronics, in particular the increase of computer power and breakthroughs in sensor technology for industrial, medical diagnostics and environmental applications, strongly depends on the scaling of electronic devices, ultimately to the size of molecules. Design of controllable molecular-scale devices may resolve the problem of energy dissipation at the nanoscale and take advantage of molecular self-assembly in the so-called bottom-up approach. This special issue of Nanotechnology is devoted to a better understanding of the function and design of molecular-scale devices that are relevant to future electronics and sensor technology. Papers contained in this special issue are selected from the symposium Nano and Giga Challenges in Electronics and Photonics: From Atoms to Materials to Devices to System Architecture (12-16 March, 2007, Phoenix, Arizona, USA), as well as from original and novel scientific contributions of invited world-renown researchers. It addresses both theoretical and experimental achievements in the fields of molecular and bioelectronics, chemical and biosensors at the molecular level, including carbon nanotubes, novel nanostructures, as well as related research areas and industrial applications. The conference series Nano and Giga Challenges in Electronics and Photonics was launched as a truly interdisciplinary forum to bridge scientists and engineers to work across boundaries in the design of future information technologies, from atoms to materials to devices to system architecture. Following the first two successful meetings in Moscow, Russia (NGCM2002) and Krakow, Poland (NGCM2004), the third Nano and Giga Forum (NGC2007) was held in 2007 hosted by Arizona State University. Besides this special issue of Nanotechnology, two other collections (in the journal Solid State Electronics and the tutorial book in the series Nanostructure Science and Technology Springer) have published additional selected and invited papers from NGC2007. The NGC2007 meeting, which included two days of tutorials (Spring School) and a three day symposium, attracted approximately 400 participants from academic, industrial and governmental research institutions from 41 countries, and covered recent developments in the fabrication and functionality of nano-scale materials, devices and system architecture from advanced CMOS to molecular electronics, photonics, optoelectronics and magnetic materials and devices. The success of the conference would not have been possible without generous support from many sponsors and research institutions, especially from Arizona State University (conference host and co-organizer), International Science and Technology Center (ISTC), National Science Foundation (NSFT), Defense Advanced Research Agency (DARPA), Office of Naval Research, Army Research Office, Computational Chemistry List (CCL), Springer Publisher, City of Tempe, STMicroelectronics, Quarles & Brady LLP, Oak Ridge National Laboratory, Canadian Consulate in Phoenix, Salt River Project (SRP) and many other local, national and international and individual supporters. We would like to acknowledge the shared responsibility for this special issue of Nanotechnology on molecular and bioelectronics, and the highly professional support from Dr Nina Couzin, Dr Alex Wotherspoon and the Nanotechnology team from the IOP Publishing. We also acknowledge the exception made in allowing the publication of some material that is outside the normal scope of Nanotechnology.

摘要

电子学的进一步快速发展,尤其是计算机性能的提升以及工业、医学诊断和环境应用领域传感器技术的突破,在很大程度上依赖于电子器件的尺寸缩小,最终缩小到分子尺寸。可控分子尺度器件的设计或许能够解决纳米尺度下的能量耗散问题,并利用分子自组装这一所谓的自下而上的方法。《纳米技术》的这一特刊致力于更深入地理解与未来电子学和传感器技术相关的分子尺度器件的功能与设计。本特刊中的论文选自“电子学与光子学中的纳米和吉咖挑战:从原子到材料再到器件直至系统架构”研讨会(2007年3月12日至16日,美国亚利桑那州凤凰城),以及特邀世界知名研究人员的原创性和新颖科学贡献。它涵盖了分子与生物电子学、分子水平的化学与生物传感器领域的理论和实验成果,包括碳纳米管、新型纳米结构,以及相关研究领域和工业应用。“电子学与光子学中的纳米和吉咖挑战”系列会议作为一个真正的跨学科论坛发起,旨在连接科学家和工程师,使其在未来信息技术设计中跨越界限开展工作,从原子到材料再到器件直至系统架构。继在俄罗斯莫斯科(NGCM2002)和波兰克拉科夫(NGCM2004)成功举办前两次会议之后,第三届纳米和吉咖论坛(NGC2007)于2007年由亚利桑那州立大学主办。除了《纳米技术》的这一特刊外,另外两个文集(发表在《固态电子学》期刊以及《纳米结构科学与技术》系列教程书中)发表了NGC2007的其他入选和特邀论文。NGC2007会议包括为期两天的教程(春季学校)和为期三天的研讨会,吸引了来自41个国家的学术、工业和政府研究机构的约400名参与者,涵盖了从先进互补金属氧化物半导体到分子电子学、光子学、光电子学以及磁性材料与器件等纳米尺度材料、器件和系统架构的制造与功能方面的最新进展。如果没有众多赞助商和研究机构的慷慨支持,此次会议不可能取得成功,特别是来自亚利桑那州立大学(会议主办方和联合组织者)、国际科技中心(ISTC)、美国国家科学基金会(NSFT)、美国国防高级研究计划局(DARPA)、美国海军研究办公室、美国陆军研究办公室、计算化学列表(CCL)、施普林格出版社、坦佩市、意法半导体公司、Quarles & Brady律师事务所、橡树岭国家实验室、加拿大驻凤凰城领事馆、盐河项目(SRP)以及许多其他地方、国家和国际层面的个人支持者。我们要感谢对《纳米技术》关于分子与生物电子学这一特刊所承担的共同责任,以及来自IOP出版社的尼娜·库津博士、亚历克斯·沃瑟斯庞博士和纳米技术团队的高度专业支持。我们还要感谢在允许发表一些超出《纳米技术》正常范围的材料方面所给予的特殊通融。

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