课题基金 / 基金详情

MRI: Acquisition of a Confocal Raman Microscope for Research and Training in Analytical/Materials Chemistry, Biochemistry and Geosciences

MRI: Acquisition of a Confocal Raman Microscope for Research and Training in Analytical/Materials Chemistry, Biochemistry and Geosciences
MRI:购买共焦拉曼显微镜,用于分析/材料化学、生物化学和地球科学的研究和培训
批准号:
1920293
负责人:
Ngee-Sing Chong
金额:
$21.18万
依托单位国家:
美国
项目类别:
Standard Grant
财政年份:
2019
资助国家:
美国
项目状态:
已结题
起止时间:
2019-09-01 至 2022-08-31

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中文摘要
翻译
该奖项由主要研究仪器(MRI)和化学仪器项目资助。中田纳西州立大学的Ngee-Sing Chong教授和他的同事Beng Guat Ooi, Charles Chusuei和Joe Collins正在获得一台共聚焦拉曼显微镜。拉曼显微镜使用激光扫描样品表面。激光波长探测表面并产生光谱,识别材料中的化学成分。这提供了关于材料性质的有用信息。例如,由于越来越需要利用植物生物量生产生物乙醇,该仪器被用于研究纤维素的化学预处理。通过将这一工具纳入研究生和本科生的课程,学生可以接受研究生学习、在工业、学术界和国家实验室就业的培训。通过产学研合作开展的研究活动也受益于该仪器的可用性。拉曼显微镜是一种强大的分析工具,用于定性和半定量地鉴定各种材料的化学成分。它被用于许多重要的研究领域。碳纳米管的化学改性对化学和生物传感器具有重要意义。研究了植物组织中木质纤维素的化学和物理处理条件对其生物降解的影响。研究界面现象的反应机理与温度的关系是当前的课题。芳香胺在细胞器中DNA加合物的形成是另一项正在进行的研究。酵母和真菌如何代谢糖、纤维素生物质和有机污染物,以及简易生物燃料合成途径的研究正在进行中。另一个项目是对贝壳和贝壳回火陶器进行考古研究,作为来源研究的代理。其他与考古相关的研究侧重于利用显微镜在小空间分辨率下分析易碎的、易腐烂的、古老的材料(罐子里的残留物),因为它是敏感的,而且本质上是非破坏性的。该奖项反映了美国国家科学基金会的法定使命,并通过使用基金会的知识价值和更广泛的影响审查标准进行评估,被认为值得支持。
英文摘要
This award is funded by the Major Research Instrumentation (MRI) and Chemical Instrumentation programs. Professor Ngee-Sing Chong from Middle Tennessee State University and colleagues Beng Guat Ooi, Charles Chusuei and Joe Collins are acquiring a confocal Raman microscope. A Raman microscope uses a laser to scan the surface of a sample. The laser wavelengths probe the surface and produce a spectrum which identifies chemical components in the material. This gives useful information on the properties of the material. The instrument is used, for example, to study the chemical pretreatment of cellulose because of the increasing need for the utilization of plant biomass for bioethanol production. By incorporating this instrument in coursework both at the graduate and undergraduate levels, students are trained for post-graduate studies, employment in industry, academia and national laboratories. Research activities via industry-university collaborations also benefits from the availability to use the instrument. The Raman microscope is a powerful analytical tool for identifying chemical composition qualitatively and semi-quantitatively of various materials. It is being used in a number of important research areas. The chemical modification of carbon nanotubes important for chemical and biological sensors is being studied. How chemical and physical treatment conditions of lignocellulose in plant tissue influences its biodegradation is investigated. The study of reaction mechanisms of interfacial phenomena as a function of temperature is a current project. DNA adduct formation of aromatic amines in cell organelles is another study underway. Investigations of how yeasts and fungi metabolize sugars, cellulosic biomass, and organic contaminants as well as pathways for facile biofuel synthesis are under progress. Another project is carrying out archaeological studies of shells and shell-tempered pottery as a proxy for provenance studies. Other archeological-related research focuses on analyzing fragile, perishable, ancient materials (residues in pots) at small spatial resolutions using the microscope because it is sensitive, and non-destructive in nature.This award reflects NSF's statutory mission and has been deemed worthy of support through evaluation using the Foundation's intellectual merit and broader impacts review criteria.
期刊论文(1)
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会议论文
DOI: 10.3390/chemosensors8020022
发表时间: 2020-03
期刊: Chemosensors
影响因子: 4.2
作者: [Mohammad S. Kader;C. C. Chusuei-C.]
通讯作者: Mohammad S. Kader;C. C. Chusuei-C.
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