Atom Probe Tomograph
Atom Probe Tomograph
批准号:
524274479
负责人:
金额:
$0.0万
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 --
中文摘要
这项申请的目的是通过实施一个新的竞争力极点,大大加强弗赖堡大学的绿色能源研究。它打算安装一个原子探针断层扫描仪(APT)和一个聚焦离子束/扫描电子显微镜(FIB-SEM)系统。弗莱堡大学从德国研究基金会获得的第三方资助在德国大学中排名第九,但APT还没有实现,这阻碍了许多科学领域的研究。将FIB-SEM与APT相结合,以APT为主要仪器,建立“相关显微镜”。相关显微镜的主要用途是研究能源装置,如太阳能电池和电池。跨尺度相关显微镜将对理解原子水平的物理现象(体和内部界面的相互扩散、偏析、沉淀和相形成)做出重大贡献。这对进一步提高太阳能电池和电池的效率至关重要。其他应用领域将包括钙钛矿,多材料接头,如焊接铝-钢或铝-钛化合物,半导体异质结构器件和量子材料(量子计算机的量子比特),与弗莱堡大学和弗劳恩霍夫研究所的其他小组合作。
英文摘要
The aim of this application is to substantially strengthen green energy research at the University of Freiburg by implementation of a new pole of competence. It is intended to install an atom probe tomography instrument (APT) and a focus-ion-beam/scanning electron microscopy (FIB-SEM) system. The University of Freiburg ranks ninth among German universities in terms of the acquisition of third-party funding from the German Research Foundation, but APT is not available yet, which hampers research in many fields of science. ‘Correlative Microscopy’ will be set up by combining FIB-SEM and APT with the APT as the main instrument. The main use of Correlative Microscopy will be the research on energy devices such as solar cells and batteries. Cross-scale correlative microscopy will make significant contributions to understanding physical phenomena (interdiffusion, segregation, precipitation, and phase formation in the bulk and at internal interfaces) down to the atomic level. This is critical to further improve the efficiency of solar cells and batteries. Other areas of application will include perovskites, multi-material-joints like welded aluminum-steel or aluminum-titanium compounds, semiconductor heterostructure devices, and quantum materials (quantum bits for quantum computers) in collaboration with other groups at the University of Freiburg and Fraunhofer Institutes.
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