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Development of a Multi-Purpose Laser Deposition Facility for Research and Education in Nanostructured Materials

Development of a Multi-Purpose Laser Deposition Facility for Research and Education in Nanostructured Materials
开发用于纳米结构材料研究和教育的多用途激光沉积设备
批准号:
0116098
负责人:
Renato Camata
金额:
$14.66万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2001
资助国家:
美国
项目状态:
已结题
起止时间:
2001-09-01 至 2005-03-31

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中文摘要
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英文摘要
This award from the Major Research Instrumentation program to the University of Alabama Birmingham (UAB) is for the development of a multipurpose laser deposition facility for research and education in nanostructured materials. The first phase of the project consists in the development of a novel nanoparticles pulsed beam laser deposition technique that delivers size-selected nanoparticles to deposit arbitrarily shaped patterns on a substrate. The second phase of the project consists in the integration of the new technique with conventional Pulsed Laser Deposition technique into a single deposition facility. The new facility will provide a new method for creation of nano composite materials. The facility will be a multi-user tool for research and training in nanostructured material at the UAB. The instrument will help establish five new research initiatives at UAB. This instrument development project will complement an existing NSF-Supported REU -site.This award from the Major Research Instrumentation program to the University of Alabama Birmingham (UAB) is for the development of a multipurpose laser deposition facility for research and education in nanostructured materials. The first phase of the project consists in the development of a novel nanoparticles pulsed beam laser deposition technique that delivers size-selected nanoparticles to deposit arbitrarily shaped patterns on a substrate. The second phase of the project consists in the integration of the new technique with conventional Pulsed Laser Deposition technique into a single deposition facility. The new facility will provide a new method for creation of nano composite materials. The facility will be a multi-user tool for research and training in nanostructured material at the UAB. The instrument will help establish five new research initiatives at UAB. This instrument development project will complement an existing NSF-Supported REU -site.
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