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Exploring diverse supramolecular tessellation through hierarchical assemblies of nonalternant nanographene
Proceedings of the National Academy of Sciences of the United States of America ( IF 9.4 ) Pub Date : 2025-05-30 , DOI: 10.1073/pnas.2426059122
Jian SunZiqi DengDavid Lee PhillipsJunzhi LiuaDepartment of Chemistry, The University of Hong Kong - Chinese Academy of Sciences Joint Laboratory on New Materials and Shanghai-Hong Kong Joint Laboratory on Chemical Synthesis, The University of Hong Kong, Hong Kong 999077, ChinabState Key Laboratory of Synthetic Chemistry, The University of Hong Kong, Hong Kong 999077, ChinacMaterials Innovation Institute for Life Sciences and Energy, The University of Hong Kong - Shenzhen Institute of Research and Innovation, Shenzhen 518048, China
Proceedings of the National Academy of Sciences of the United States of America ( IF 9.4 ) Pub Date : 2025-05-30 , DOI: 10.1073/pnas.2426059122
Jian SunZiqi DengDavid Lee PhillipsJunzhi LiuaDepartment of Chemistry, The University of Hong Kong - Chinese Academy of Sciences Joint Laboratory on New Materials and Shanghai-Hong Kong Joint Laboratory on Chemical Synthesis, The University of Hong Kong, Hong Kong 999077, ChinabState Key Laboratory of Synthetic Chemistry, The University of Hong Kong, Hong Kong 999077, ChinacMaterials Innovation Institute for Life Sciences and Energy, The University of Hong Kong - Shenzhen Institute of Research and Innovation, Shenzhen 518048, China
Proceedings of the National Academy of Sciences, Volume 122, Issue 22, June 2025.
SignificanceThe tessellated material is poised to become a fascinating subject in materials science, following the initial exploration of quasicrystals. Specifically, supramolecular tessellation at the molecular level has primarily been observed in ...
中文翻译:
通过非交替纳米石墨烯的分层组装探索多样化的超分子镶嵌
美国国家科学院院刊,第 122 卷,第 22 期,2025 年 6 月。
意义在对准晶体的初步探索之后,镶嵌材料有望成为材料科学中一门引人入胜的学科。具体来说,分子水平的超分子镶嵌主要在 ...
更新日期:2025-06-04
SignificanceThe tessellated material is poised to become a fascinating subject in materials science, following the initial exploration of quasicrystals. Specifically, supramolecular tessellation at the molecular level has primarily been observed in ...
中文翻译:

通过非交替纳米石墨烯的分层组装探索多样化的超分子镶嵌
美国国家科学院院刊,第 122 卷,第 22 期,2025 年 6 月。
意义在对准晶体的初步探索之后,镶嵌材料有望成为材料科学中一门引人入胜的学科。具体来说,分子水平的超分子镶嵌主要在 ...