MRI: Development of Combined Optically-pumped and Optically-detected NMR of Bulk and Nanostructured Semiconductors
MRI: Development of Combined Optically-pumped and Optically-detected NMR of Bulk and Nanostructured Semiconductors
批准号:
0923413
负责人:
Sophia Hayes
金额:
$37.55万
依托单位:
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:
2009-09-01 至 2013-08-31
中文摘要
该奖项是根据2009年美国复苏和再投资法案(公法111-5)资助的。有了这个来自主要研究仪器(MRI)计划的奖项,来自华盛顿大学圣路易斯分校的Sophia Hayes和她的研究小组将开发一种能够进行光泵和光检测核磁共振(NMR)测量的仪器。 该仪器将把光泵核磁共振和光探测核磁共振技术联合收割机结合到一台独一无二的仪器中。 该光谱仪将用于研究块状和纳米结构的半导体材料。 这些材料具有许多重要的光电特性,将进行的研究可以直接探测缺陷或陷阱位点,并研究这些位点对重要物理特性的影响,如载流子动力学。 该项目将由包括本科生和研究生在内的各种青年科学家小组实施。 该研究还与国际(多特蒙德大学,德国)和工业研究伙伴(Kopin Coroporation和MEMC)进行了重要合作,进一步扩大了该研究的影响。新型NMR技术开辟了新的研究途径。 利用该奖项开发的仪器将使科学家能够以前所未有的灵敏度研究重要材料的特性。 该仪器将是同类仪器中的第一台,并将使Hayes,她的研究学生和合作者能够探测技术重要材料的特性。 此外,从事该项目的研究生将接受跨学科教育,并获得国际和工业合作的额外好处,这将为他们在科学和技术领域的成功职业生涯做好准备。
英文摘要
This award is funded under the American Recovery and Reinvestment Act of 2009 (Public Law 111-5).With this award from the Major Research Instrumentation (MRI) program, Sophia Hayes and her research group from Washington University - St. Louis will develop an instrument capable of optically-pumped and optically-detected nuclear magnetic resonance (NMR) measurements. The proposed instrument will combine the techniques of optically-pumped NMR and optically-detected NMR into a one-of-a-kind instrument. The proposed spectrometer will be used to study bulk and nano-structured semi-conductor materials. These materials have a number of important optoelectronic properties, and the studies that will be carried out can directly probe defect or trap sites, and study the impact of these sites on important physical properties, such as carrier dynamics. The project will be carried out by a diverse group of young scientists, including undergraduate and graduate students. The research also features important collaborations with international (University of Dortmund, Germany) and industrial research partners (Kopin Coroporation and MEMC), further broadening the impact of this research.New kinds of NMR techniques open up new avenues of research. The instrument developed with this award will allow scientists to study the properties of important materials, with unprecedented sensitivity. The instrument will be the first of its kind, and will enable Hayes, her research students and collaborators to probe the properties of technologically important materials. In addition, the research students working on this project will receive an interdisciplinary education, with the added benefits of exposure to international and industrial collaborations, which will prepare them for successful careers in science and technology.
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