课题基金 / 基金详情

NSEC: Center for Scalable and Integrated Nanomanufacturing (SINAM)

NSEC: Center for Scalable and Integrated Nanomanufacturing (SINAM)
NSEC:可扩展和集成纳米制造中心 (SINAM)
批准号:
0751621
负责人:
Xiang Zhang
金额:
$1765.82万
依托单位国家:
美国
项目类别:
Cooperative Agreement
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-10-01 至 2016-09-30

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中文摘要
翻译
该合同为可扩展和集成纳米制造的纳米科学与工程中心(SINAM)提供了额外五年的延续。该中心专注于制造范式,提供将实验室科学转化为纳米电子,生物医学和传统工业的工业应用。该中心包括来自加州大学洛杉矶分校、加州大学伯克利分校、斯坦福大学、加州大学圣地亚哥分校、北卡罗来纳大学和惠普实验室等六所机构的科学家和工程师团队。研究将集中在纳米制造范例,包括等离子体成像光刻(PIL),使用极短波长的工程表面等离子体和超成型光刻。两家公司都致力于1-10纳米尺度的纳米制造。SINAM将进一步开发一种新的混合方法,结合自顶向下和自底向上的技术,实现异构纳米级组件在高阶结构和器件中的大规模并行集成。SINAM将开发系统工程策略,以扩大所开发的技术,并与工业界合作开发下一代纳米制造工具,用于商业产品的设计和开发。中心吗?美国未来五年的目标是全面开发和扩大纳米制造技术,使其能够过渡到工业应用。SINAM更广泛的影响包括高科技劳动力的教育和培训,以及为公众利益提供社会服务。加州的学校将做出特别努力,向少数族裔和女学生伸出援手。这些教育活动包括:(1)7-12年级的“发现纳米技术”,新加坡理工学院的研究人员将为学生提供纳米技术的探究模块;(2)纳米制造暑期学院,为本科生和K-12学校教师提供为期六周的暑期培训;(3)“研究生青年研究员(GYI)”和研究生产业实习。为了建立对纳米制造机会和影响的认识,中心人员将与加州科学博物馆和加利福尼亚州经济战略小组合作,他们将通过ASME, SME和IEEE等专业组织组织专题讨论会。在该中心成立的前五年成立的SINAM工业联盟将与该中心密切合作。我们的工业合作伙伴,如惠普和IBM,将新技术转化为工业应用。这项研究产生的新的制造范式将通过加速基于纳米技术的新技术和新产业的出现来影响社会。
英文摘要
This award provides for the continuation of the Nano Science and Engineering Center for Scalable and Integrated Nanomanufacturing (SINAM) for an additional five years. The center focuses on a manufacturing paradigm that offers to transform laboratory science into industrial applications in nano-electronics, biomedicine, and in traditional industries. The center includes a team of scientists and engineers from six institutions, UCLA, UC Berkeley, Stanford, UCSD, University of North Carolina and HP Labs. Research will focus on a nano-manufacturing paradigm that includes plasmonic imaging lithography (PIL) using engineered surface plasmons with extremely short wavelength and ultra-molding lithography. Both aim at nanomanufacturing at the 1-10 nanometer scale. SINAM will further develop a novel hybrid approach, in combining the top-down and bottom up technologies to achieve massively parallel integration of heterogeneous nanoscale components into higher-order structures and devices. SINAM will develop system engineering strategies to scale up the technologies developed and work with industry to develop the next generation of nanomanufacturing tools that will be used for commercial product design and development. The center?s goal over the next five years is to fully develop and scale up the nanomanufacturing technologies that enable the transition to industrial applications.SINAM's broader impacts includes education and training for a high tech workforce, and societal outreach for general public benefits. Special efforts will be made with California schools to reach out to minority and female students. These educational activities include: (1) Grades 7-12, Discover Nanotechnology where SINAM researchers will make use of an inquiry module on Nanotechnology for students; (2) a Nano-Manufacturing Summer Academy that will provide six weeks summer training for undergraduates students and K-12 school teachers; and (3) "Graduate Young Investigator (GYI)" and Industrial Internships for Graduate Students. To build awareness of the opportunities and impact of nano manufacturing, center personnel will work with California Science Museums and the California State Economic Strategy Panel, and they will work through professional organizations such as ASME, SME, and IEEE in organizing symposia. The SINAM Industrial Consortium, established during the first five years of the center, will work closely with the center?s industrial partners, such as HP and IBM, to transfer new technologies to industrial applications. The new manufacturing paradigm resulting from this research will impact the society through the acceleration of the emergence of new technologies and industries based on nanotechnology.
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