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200kV Cyro-Transmission Electron Microscope

200kV Cyro-Transmission Electron Microscope
200kV 冷冻透射电子显微镜
批准号:
520852391
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
德国
项目类别:
Major Research Instrumentation
财政年份:
2023
资助国家:
德国
项目状态:
未结题
起止时间:
2022-12-31 至 --

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中文摘要
翻译
跨学院研究网络SRF AMICA(斯图加特研究重点先进材料创新和表征)汇集了斯图加特大学各种科学家的仪器,方法和技术专业知识,并加强了不同研究领域科学家之间的合作。计划中的透射电子显微镜将作为一种多用户仪器,在非洲信息和通信技术学院核心设施的框架内运行,因此将向该大学的所有用户提供。它将取代一个无法修复的缺陷和三个过时的透射电子显微镜。这将在一个联合研究中心汇集透射电子显微镜领域的进一步专业知识。利用透射电子显微镜对束敏感材料进行高分辨率表征是当前生物学、生物医学、化学和材料科学研究领域的基本和最先进的技术。对于光束敏感样品的充分表征(特别是使用冷冻和断层扫描方法),斯图加特大学目前没有合适的设备-尽管存在需求-特别是不适合用户模式的广泛应用。Cryo-sTEM的应用旨在满足这一需求,并确保通过AMICA轻松访问该方法。这里要求的所选仪器配置满足各种不同参与研究小组的要求。目前和计划中的研究项目中的束敏感材料将使用计划中的Cryo-sTEM进行研究,包括生物材料、生物矿物、病毒、DNA/RNA纳米结构、哺乳动物细胞、肌肉组织、聚合物、水凝胶、塑料和混合材料。研究问题和项目范围从生物学和生物医学到化学,材料科学和一些跨学科和跨学院的研究项目。
英文摘要
The interfaculty research network SRF AMICA (Stuttgart Research Focus Advanced Materials Innovation and Characterization) pools the instrumental, methodological and technical expertise of various scientists at the University of Stuttgart and strengthens the collaboration between scientists of different research areas. The planned transmission electron microscope will be operated as a multi-user instrument within the framework of the AMICA core facility and will thus be available to all users of the university. It will replace one irreparably defective and three outdated transmission electron microscopes. This will bring together further expertise in the field of transmission electron microscopy in a joint research center. High-resolution characterizations of beam-sensitive materials by transmission electron microscopy are essential and state of the art for current research areas in biology, biomedicine, chemistry and materials science. For the adequate characterization of beam-sensitive samples (especially with cryo- and tomography methods), there is currently no suitable equipment available at the University of Stuttgart - despite the existing need - especially not for the broad application in user mode. The application for the Cryo-sTEM is intended to meet this need and to ensure easy access to the method via AMICA. The selected instrument configuration requested here meets the requirements for a variety of different participating research groups. Beam-sensitive materials of current and planned research projects to be investigated with the planned Cryo-sTEM include biogenic materials, biominerals, viruses, DNA/RNA nanostructures, mammalian cells, muscle tissue, polymers, hydrogels, plastics and hybrid materials. The research questions and projects range from biology and biomedicine to chemistry, materials science and a number of interdisciplinary and cross-faculty research projects.
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