一种范德华多孔晶体,具有构象灵活性和永久孔隙度,用于超快水释放。

IF 5.9 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Communications Chemistry Pub Date : 2024-11-30 DOI:10.1038/s42004-024-01366-1
Kentaro Maejima, Heishun Zen, Hiroyasu Sato, Eiji Nishibori, Tomoya Enjou, Youhei Takeda, Satoshi Minakata, Eri Hisamura, Ken Albrecht, Yuka Ikemoto, Irene Badía-Domínguez, Juan Sánchez-Rincón, M. Carmen Ruiz Delgado, Yohei Yamamoto, Hiroshi Yamagishi
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引用次数: 0

摘要

为了提高多孔晶体的吸附和分离性能,柔性一直是多孔晶体研究的热点。然而,在完全由范德华相互作用维持的多孔晶体中,柔性从未被观察到,因为柔性运动容易导致多孔结构的崩溃。本文报道了一种具有构象柔性和永久微孔的范德华晶体。通过电子和x射线晶体结构分析,明确地揭示了单晶结构及其对水分子吸附的结构转变。组成分子的外围芳香环随着环境湿度的增加而旋转,而孔的连通性在整个结构转变过程中保持不变。转化孔允许客人水分子以490 μs的时间常数极快地通过孔。我们证明,与传统多孔材料相比,光热加热引起的水的快速释放导致晶体粉末上方的薄膜显著向上弯曲。这一发现有助于未来基于范德华相互作用而不是内聚键的晶体工程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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A van der Waals porous crystal featuring conformational flexibility and permanent porosity for ultrafast water release
Flexibility has been pursued enthusiastically in the field of porous crystals for enhancing their adsorption and separation performances. However, flexibility has never been observed among porous crystals sustained thoroughly by van der Waals interactions since flexible motions readily lead to the collapse of the porous architecture. Here we report a van der Waals crystal featuring conformational flexibility as well as permanent microporosity. The single-crystal structure and its structural transition in response to the adsorption of water molecules were unambiguously disclosed by means of electron and X-ray crystal structure analyses. The peripheral aromatic rings of the constituent molecule rotated as increasing the ambient humidity, while the connectivity of the pores was maintained throughout the structural transition. The transformative pores allowed the guest water molecules to move exceedingly quickly through the pores with a time constant of 490 μs. We demonstrated that the quick release of water induced by photothermal heating induced a significant upward bending of a film set above the crystalline powder compared to conventional porous materials. This finding contributes to the future crystal engineering based on van der Waals interactions rather than cohesive bonds. Flexibility in porous crystals can enhance their adsorption and separation performances, however, achieving flexibility in porous crystals sustained solely through van der Waals interactions is challenging given that flexible motions typically lead to framework collapse. Here, the authors present a van der Waals crystal that features both conformational flexibility and permanent microporosity
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来源期刊
Communications Chemistry
Communications Chemistry Chemistry-General Chemistry
CiteScore
7.70
自引率
1.70%
发文量
146
审稿时长
13 weeks
期刊介绍: Communications Chemistry is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the chemical sciences. Research papers published by the journal represent significant advances bringing new chemical insight to a specialized area of research. We also aim to provide a community forum for issues of importance to all chemists, regardless of sub-discipline.
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