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Application-oriented syntheses of FeSe-based superconductor films and studies of their critical parameters

Application-oriented syntheses of FeSe-based superconductor films and studies of their critical parameters
FeSe基超导薄膜的应用合成及其关键参数研究
批准号:
448625416
负责人:
Dr. Jens Hänisch
金额:
$0.0万
依托单位国家:
德国
项目类别:
Research Grants
财政年份:
--
资助国家:
德国
项目状态:
未结题
起止时间:

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中文摘要
翻译
该合作项目的目标是通过在一个项目中结合不同的晶体结构、沉积方法和表征工具,加深对超导态的基本物理机制以及铁基超导体(FBS)优异的钉扎性能的认识。这是一个重要的步骤,因为只有通过深入和定期的科学讨论,而不仅仅是从出版物中收集数据,才能增加对材料,模型和技术细微差异的理解。从长远来看,我们的目标是确定铁基超导体的可能目标应用。在这个项目中,我们专注于FBS的硫属化物分支,即FeSe基超导体。我们从两个方面解决这个问题,(Te掺杂)FeSe具有最短的c轴长度和最简单的晶体结构和(Mn掺杂)(Li,Fe)OHFeSe,一种通过(Li,Fe)OH夹层在c方向上延伸的FeSe结构。在初步保证用普通掺杂剂可重复沉积高质量样品后,将制备和研究相应的其他掺杂剂以及新的掺杂剂(例如Co,Ni,Cu,Zn,S)。在IoP-CAS 2上通过各种单晶生长方法合成了相当大的K2 Fe 4Se 5和Fe(Se,Te,S)单晶。在IoP-CAS 3. 0平台上,采用基质辅助水热外延(MHE)技术制备了一系列高质量的(Li,Fe)OHFeSe薄膜。在ITEP-KIT 4. 0上,采用脉冲激光沉积(PLD)技术制备了高质量的Fe(Se,Te)薄膜。确定这些薄膜和单晶的物理性质5.确定关键参数和机制所提出的工作将产生重大和及时的影响,将通过提供以下方面促进对铁基超导体的物理理解和材料研究:(1) 不同类型的外延,超导Fe(Se,Te)和(Li,Fe)OHFeSe薄膜和晶体的高结构质量,也将用于后续项目(2) 在IoP-CAS和ITEP-KIT制备的一组薄膜的基本和面向应用的参数数据库(3) 深入了解所研究材料和FBS中超导性和涡旋物质背后的物理机制。该项目的结果对基础研究和潜在的技术应用都有影响。首先,结果将是该项目的样品或分别生产它们的配方。我们将在同行评议的期刊上发表我们的研究成果,并在国际会议上展示。另一方面,该项目可以加强中国和德国领先研究机构在FBS研究方面的科学合作,培养年轻科学家,并在小组之间交流思想,工作方法和方法。
英文摘要
The goal of the proposed collaborative project is to deepen the knowledge about the underly-ing physical mechanisms for the superconducting state as well as the excellent pinning properties of Fe-based superconductors (FBS) by combining different crystal structures, deposition methods and characterization tools within one project. This is an important step because only through intensive and regular scientific discussions instead of mere collecting data from publications can the understanding in the subtle differences in materials, models and techniques increase. On a long run, we are aiming on identifying possible target applications of Fe-based superconductors. In this project, we are focussing on the chalcogenide branch of FBS, namely the FeSe-based superconductors. We tackle this issue from two sides, (Te-doped) FeSe with the shortest c-axis length and simplest crystal structure and (Mn-doped) (Li,Fe)OHFeSe, an FeSe structure elongated in c-direction by (Li,Fe)OH interlayers. After initial assurance of reproducible deposition of high-quality samples with the common dopants, the respective other dopants as well as new ones (e.g. Co, Ni, Cu, Zn, S) will be prepared and investigated.The objectives are the following:1. Synthesizing sizable K2Fe4Se5 and Fe(Se,Te, S) single crystals by various single crystal growth methods at IoP-CAS2. Synthesizing a series of high-quality (Li,Fe)OHFeSe films by matrix-assisted hydro-thermal epitaxy (MHE) at IoP-CAS3. Synthesizing high-quality Fe(Se,Te) films by pulsed laser deposition (PLD) at ITEP-KIT4. Determining the physical properties of these films and single crystals5. Determining critical parameters & mechanismsThe proposed work will have a significant and timely impact that will advance physical understanding and material research of the iron-based superconductors by providing: (1) Different types of epitaxial, superconducting Fe(Se,Te) and (Li,Fe)OHFeSe films and crystals of high structural quality which will be available also for follow-up projects(2) A data base of fundamental and application-oriented parameters for the set of films prepared at IoP-CAS and ITEP-KIT(3) A deep understanding of the physical mechanisms behind superconductivity and vortex matter in the materials investigated and of FBS in general.The results of this project have both impact on basic research and implications for potential technical applications. Firstly, the outcome will be the samples of this project or respectively the recipes to produce them. We will publish our findings in peer-reviewed journals and present them at international conferences.On the other hand, this project can strengthen the scientific collaboration between the leading institutes in China and Germany on FBS research, train young scientists and exchange ideas, working methods and approaches between the groups.
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炭包覆纳米晶的"Oriented Attachment"生长及其多维结构构筑
  • 批准号:
    51572015
  • 项目类别:
    面上项目
  • 资助金额:
    64.0万元
  • 批准年份:
    2015
  • 负责人:
    周继升
  • 依托单位: