课题基金 / 基金详情

Collaborative Research: Exploration of Graphene-Nanocrystal Metamaterials

Collaborative Research: Exploration of Graphene-Nanocrystal Metamaterials
合作研究:石墨烯-纳米晶超材料的探索
批准号:
0900509
负责人:
Junhong Chen
金额:
$26.37万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2009
资助国家:
美国
项目状态:
已结题
起止时间:
2009-08-01 至 2012-07-31

项目摘要

项目成果

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中文摘要
翻译
该奖项是根据2009年《美国复苏和再投资法案》(公法111-5)提供资金的。该奖项的研究目标是促进石墨烯-纳米晶超材料或石墨烯-纳米晶混合结构的制造、基础理解和器件应用,即表面带有离散纳米晶装饰的石墨烯薄片。将执行的具体任务包括对超材料的实验和理论表征,特别是纳米晶体和石墨烯薄片在各种外部刺激下的电子和物理相互作用;研究低成本和大规模制造这种材料的方法;以及探索将其用于气体传感器。可负担得起的混合纳米结构及其基本特性的出现将为纳米科学和纳米技术开辟新的机会,并加速发现和发明。纳米晶体和石墨烯的协同响应可用于各种创新设备应用,包括气体传感器、生物传感器和光伏电池。如果成功,该项目成果将使石墨烯-纳米晶体超材料的广泛创新应用成为可能,这些材料具有可为特定条件量身定做的最佳性能。即将展示的新传感器将对环境监测具有吸引力,并直接造福社会。该项目将在石墨烯工程和应用领域培训研究生和本科生,并将通过关于混合纳米结构的课程模块、将小型纳米技术项目整合到密歇根大学和密歇根大学现有课程中以及培训科学教师,接触到更广泛的学生群体。通过“科学星期六”的额外努力,将吸引更多未被充分代表的学生进入STEM领域。
英文摘要
This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5). The research objective of this award is to advance the manufacture, the fundamental understanding, and the device application of graphene-nanocrystal metamaterials or hybrid graphene-nanocrystal structures, i.e., graphene sheets with discrete nanocrystals decorations on their surfaces. Specific tasks to be performed include experimental and theoretical characterization of the metamaterials, particularly electronic and physical interactions between nanocrystals and graphene sheets with various external stimuli; investigation of methods for low-cost and large-scale manufacturing of such materials; and exploration of their use for gas sensors. The availability of affordable hybrid nanostructures and their fundamental properties will open up new opportunities for nanoscience and nanotechnology and accelerate discoveries and inventions. The synergistic response from the nanocrystal and the graphene can be harnessed for various innovative device applications, including gas sensors, biosensors, and photovoltaic cells. If successful, the project results will enable a wide range of innovative applications of graphene-nanocrystal metamaterials with optimal properties that can be tailored for specific conditions. The new sensor to be demonstrated will be attractive for environmental monitoring and directly benefit society. The project will train both graduate and undergraduate students in areas of graphene engineering and applications, and will reach the broader student population through a course module on hybrid nanostructures, integration of small nanotechnology projects into existing curricula at both UWM and UT, and training of science teachers. Additional efforts through "Science Saturdays" will be used to attract more underrepresented students to STEM fields.
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