微结构和结构动力学研究
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本数据集包含利用固相反应探索合成具有独特晶体结构和化学特性的新型超导体,报道了一种通过固相反应合成的新型金属间氧化物Hf3Pt4Ge2O的超导电性;利用FexNi1-xPS3主体中的铁(Fe)离子作为插层反应“活性”中心,在N,N-二甲基甲酰胺和盐酸苯胺溶液中,实现了NiPS3的邻菲啰啉有机插层实验,利用球差校正透射电子显微镜解析了Bi2(Sr2-xLax),CuO6+δ,Cr基超导ACr3As3等超导材料中的新型微结构特征,同时利用时间分辨电子显微镜探索层状功能体系及电子体系中的多重有序态及结构动力学特征,这对理解低维系统中强关联耦合行为具有重要意义。
This dataset covers the exploration and synthesis of novel superconductors with distinct crystal structures and chemical properties via solid-state reactions, and reports the superconductivity of a new intermetallic oxide Hf3Pt4Ge2O synthesized through solid-state reaction. Additionally, using iron (Fe) ions in the FexNi1-xPS3 host as the "active" centers for intercalation reactions, the phenanthroline organic intercalation experiment of NiPS3 was implemented in N,N-dimethylformamide and aniline hydrochloride solutions. Aberration-corrected transmission electron microscopy was used to analyze the novel microstructural characteristics in several superconducting materials including Bi2(Sr2-xLax)CuO6+δ and the Cr-based superconductor ACr3As3. Meanwhile, time-resolved electron microscopy was applied to investigate the multiple ordered states and structural dynamic properties in layered functional systems and electronic systems, which holds critical significance for understanding the strongly correlated coupling behaviors in low-dimensional systems.




