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Bottom-up design and assembly with superatomic building blocks

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【作者】 于法民刘中华李佳芮黄婉蓉杨欣瑞王志刚

【Author】 Famin Yu;Zhonghua Liu;Jiarui Li;Wanrong Huang;Xinrui Yang;Zhigang Wang;Institute of Atomic and Molecular Physics, Jilin University;College of Physics, Jilin University;Institute of Theoretical Chemistry, College of Chemistry, Jilin University;

【通讯作者】 王志刚;

【机构】 Institute of Atomic and Molecular Physics, Jilin UniversityCollege of Physics, Jilin UniversityInstitute of Theoretical Chemistry, College of Chemistry, Jilin University

【摘要】 Constructing specific structures from the bottom up with artificial units is an important interdisciplinary topic involving physics, chemistry, materials, and so on. In this work, we theoretically demonstrated the feasibility of using superatoms as building blocks to assemble a complex at atomic-level precision. By using a series of actinide-based endohedral metallofullerene(EMF) superatoms that can form one, two, three and four chemical bonds, a planar complex with intra-and inter-molecular interactions was assembled on the Au(111) surface. This complex is composed of two parts, containing ten and eight superatoms, respectively. The electronic structure analysis shows that the electron density inside each part is connected and the closed-shell electronic arrangement system is designed. There is also an obvious van der Waals boundary by physical adsorption between the two parts, and a stable complex is formed. Since this complex is realized by the first-principles calculations of quantum mechanics, our results help not only achieve atomic-level precision construction with artificial superatomic units but also maintain atomic-level functional properties.

【Abstract】 Constructing specific structures from the bottom up with artificial units is an important interdisciplinary topic involving physics, chemistry, materials, and so on. In this work, we theoretically demonstrated the feasibility of using superatoms as building blocks to assemble a complex at atomic-level precision. By using a series of actinide-based endohedral metallofullerene(EMF) superatoms that can form one, two, three and four chemical bonds, a planar complex with intra-and inter-molecular interactions was assembled on the Au(111) surface. This complex is composed of two parts, containing ten and eight superatoms, respectively. The electronic structure analysis shows that the electron density inside each part is connected and the closed-shell electronic arrangement system is designed. There is also an obvious van der Waals boundary by physical adsorption between the two parts, and a stable complex is formed. Since this complex is realized by the first-principles calculations of quantum mechanics, our results help not only achieve atomic-level precision construction with artificial superatomic units but also maintain atomic-level functional properties.

【关键词】 superatombottom-upassemblyatomic level
【Key words】 superatombottom-upassemblyatomic level
【基金】 supported by the National Natural Science Foundation of China (Grant Nos. 11974136, 11674123, and 11374004)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2022年12期
  • 【分类号】O562
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