课题基金 / 基金详情

MRI: Acquisition of an Analytical Transmission Electron Microscope System for Multidisciplinary Research and Education at UNC Charlotte

MRI: Acquisition of an Analytical Transmission Electron Microscope System for Multidisciplinary Research and Education at UNC Charlotte
MRI:北卡罗来纳大学夏洛特分校购买用于多学科研究和教育的分析透射电子显微镜系统
批准号:
0821604
负责人:
Terry Xu
金额:
$55.65万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2008
资助国家:
美国
项目状态:
已结题
起止时间:
2008-08-01 至 2011-07-31

项目摘要

项目成果

Terry Xu的其他基金

相似基金

相关文献

中文摘要
翻译
这个主要研究仪器(MRI)奖的目的是获得一个透射电子显微镜(TEM)系统的多学科研究和教育在北卡罗来纳州大学夏洛特(夏洛特夏洛特)。TEM将被安置在夏洛特夏洛特光电和光通信中心。这种共享用户工具将影响来自夏洛特夏洛特八个部门和四个跨学科研究中心的23名研究人员。它还将作为一个中心设施,研究人员和学生在大夏洛特地区和邻近机构,包括约翰逊C。史密斯大学(JCSU)、本尼迪克特学院(BC)、温斯顿-塞勒姆州立大学(WSSU)和戴维森学院、生物医学工程系统中心(包括卡罗莱纳医学中心)附属学者以及与夏洛特研究所相关的工业合作伙伴。TEM将加速和刺激研究工作,包括(1)创建用于热电和太阳能转换的新型纳米结构材料;(2)创建用于结构应用的新型超细晶粒和纳米晶体金属;(3)了解地质力引起的环境变化,以创造更好的地球;(4)发现用于检测和降解环境污染物的新材料;(5)评估水生生物中纳米颗粒的环境风险;(6)了解衰老机制以实现未来寿命延长;(7)创造新的组织工程方法以增强骨与矫形植入物的整合;以及(8)创造用于未来光刻应用的新型纳米复合材料。利用TEM获得的研究成果将为国家和区域技术需求的更广泛领域做出重大贡献,特别是在能源转换,环境可持续性,生物技术,先进材料和光电子领域。此外,TEM将对新博士生产生直接影响。该计划在纳米科学,是在2007年秋季推出的教育和研究工具。结合校园内的各种材料表征资源,TEM将为K-12,本科生和研究生提供宝贵的培训和教育机会(重点是来自传统上在科学领域代表性不足的群体的学生)以及当地教师,方法是:(1)JCSU,WSSU,本尼迪克特学院(所有三个机构都是历史上的黑人学院和大学机构)和夏洛特夏洛特;(2)本科生研究经验(REU)计划的各种资源;(3)女工程师协会(SWE)章;(4)Aspire!纳米夏令营项目
英文摘要
The objective of this Major Research Instrumentation (MRI) award is to acquire a transmission electron microscope (TEM) System for multidisciplinary research and education at the University of North Carolina at Charlotte (UNC Charlotte). The TEM will be housed at the UNC Charlotte Center for Optoelectronics and Optical Communication. This shared-user instrument will impact 23 researchers from eight departments and four interdisciplinary research centers at UNC Charlotte. It will also serve as a central facility to researchers and students in the greater Charlotte region and neighboring institutions including Johnson C. Smith University (JCSU), Benedict College (BC), Winston-Salem State University (WSSU) and Davidson College, scholars affiliated with the Center for Biomedical Engineering Systems including the Carolina Medical Center, and industrial partners associated with the Charlotte Research Institute. The TEM will accelerate and stimulate research efforts encompassing (1) creation of new classes of nanostructured materials for thermoelectric and solar energy conversion; (2) creation of new ultrafine grained and nanocrystalline metals for structural applications; (3) understanding environmental change caused by geological forces to create a better planet; (4) discovery of novel materials for the detection and degradation of environmental pollutants; (5) assessment of nanoparticle risks in aquatic organisms for environmental concerns; (6) understanding the mechanism of aging to realize future life prolongation; (7) creation of new tissue engineering approaches to enhance bone integration with orthopedic implants; and (8) creation of novel nanocomposites for future lithography applications. Research results obtained using the TEM will provide significant contributions to the broader areas of national and regional technological needs, specifically in the fields of energy conversion, environmental sustainability, biotechnology, advanced materials, and optoelectronics. In addition, the TEM will have a direct impact on the new Ph.D. program in Nanoscale Science that was launched in Fall 2007 as both an educational and a research tool. Combined with various materials characterization resources on campus, the TEM will provide invaluable training and education opportunities to K-12, undergraduate and graduate students (with a focus on students from groups traditionally underrepresented in the sciences) as well as local area teachers through: (1) various collaborative research and educational projects between JCSU, WSSU, Benedict College (all three institutions are Historically Black College and University institutions) and UNC Charlotte; (2) a variety resources of Research Experiences for Undergraduates (REU) programs; (3) the Society of Women Engineers (SWE) chapter; and (4) the Aspire! Summer Nanocamp program.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
Collaborative Research: Boron Carbide Nanowires - Structure and Transport Property Relations
CAREER: Boron-based One-dimensional Nanostructures of Thermoelectric Energy Conversion
Collaborative Research: Novel Boron-based One-Dimensional Nanostructures: Synthesis and Measurement of Transport Properties
海外基金