論文 Reversible and Massive Structural Transformation in Meltable Cyanido‐bridged Coordination Polymer Crystals

Yuudai Iwai ; Saaya Kimura ; Manabu Nakaya ORCID ; Takanori Nakane ORCID ; Akihiro Kawamoto ORCID ; Genji Kurisu ORCID ; Yuta Tsuji ORCID ; Kenji Hirai ORCID ; Koji Kimoto SAMURAI ORCID ; Ovidiu Cretu SAMURAI ORCID ; Fumitaka Takeiri ORCID ; Kunihisa Sugimoto ORCID ; Benjamin Le Ouay ORCID ; Masaaki Ohba ORCID ; Ryo Ohtani ORCID

コレクション

引用
Yuudai Iwai, Saaya Kimura, Manabu Nakaya, Takanori Nakane, Akihiro Kawamoto, Genji Kurisu, Yuta Tsuji, Kenji Hirai, Koji Kimoto, Ovidiu Cretu, Fumitaka Takeiri, Kunihisa Sugimoto, Benjamin Le Ouay, Masaaki Ohba, Ryo Ohtani. Reversible and Massive Structural Transformation in Meltable Cyanido‐bridged Coordination Polymer Crystals. Chemistry – A European Journal. 2025, 31 (66), e02640. https://doi.org/10.1002/chem.202502640

説明:

(abstract)

Cyanido (CN−)-bridged coordination polymers (CP) have been extensively studied as molecular-based functional materials. However, synthesizing 3D compounds composed only of metal ions and CN−—without bulky organic groups—and that melt before decomposing remains a considerable challenge. This difficulty arises because CN− strongly interconnect metal ions, forming rigid, dense frameworks with high melting points. In this study, we successfully synthesized a melting composite consisting of 3D KCd[Cu(CN)2]3 and 2D K2Cu3(CN)5 by dehydrating K2Cd(H2O)Cu4(CN)8·1.5H2O. Remarkably, nanodomains of these two compounds coexisted within single particles, allowing their crystal structures to be independently determined by 3D electron diffraction (MicroED) of the resulting powders. Each compound melted at its respective melting point, around 559 K. Notably, the melting point of KCd[Cu(CN)2]3 is unusually low for a 3D dense coordination framework. This atypically low melting point results from a combination of crystalline surface effects, and the entropy contribution of the dynamic, labile two-coordinate Cu centers in the framework. Additionally, we demonstrated a reversible transformation between the dehydrated mixture and the hydrated parent compound through exposure to water vapor, highlighting the dynamic and responsive nature of these CN−-based solid-state materials.

権利情報:

キーワード: coordination polymer, melting, metal cyanido

刊行年月日: 2025-11-25

出版者: Wiley

掲載誌:

  • Chemistry – A European Journal (ISSN: 09476539) vol. 31 issue. 66 e02640

研究助成金:

原稿種別: 出版者版 (Version of record)

MDR DOI:

公開URL: https://doi.org/10.1002/chem.202502640

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更新時刻: 2025-12-01 16:30:04 +0900

MDRでの公開時刻: 2025-12-01 16:24:33 +0900

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