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作 者:Nobuhiro Sato Ryojun Toyoda Tetsu Sato Zi Lang Goo Shinya Takaishi Koki Chida Takeharu Yoshii Hirotomo Nishihara Kunihisa Sugimoto Ryota Sakamoto
机构地区:[1]Department of Chemistry,Graduate School of Science,Tohoku University,Sendai 980-8578,Japan [2]Department of Chemistry,Kindai University,Osaka 577-8502,Japan [3]Institute of Multidisciplinary Research for Advanced Materials,Tohoku University,Sendai,Miyagi 980-8577,Japan [4]Institute of Multidisciplinary Research for Advanced Materials and Advanced Institute for Materials Research(WPI-AIMR),Tohoku University,Sendai,Miyagi 980-8577,Japan [5]Division for the Establishment of Frontier Sciences of Organization for Advanced Studies,Tohoku University,Sendai 980-8577,Japan
出 处:《Precision Chemistry》2024年第9期480-487,共8页精准化学(英文)
基 金:supported by JST-FOREST(JPMJFR203F)and JST-CREST(JPMJCR18R3);supported by JSPS KAKENHI Grant Nos.JP23H04612,JP20H02547,21K14490,22KJ0294,22H05142,and 22H05145;Nippon Sheet Glass Foundation for Materials Science and Engineering;the Asahi Glass Foundation for financial support;A part of SXRD measurements was performed at SPring-8 BL02B1 with the approval of the Japan Synchrotron Radiation Research Institute(JASRI)(Proposal Nos.2023B1680,2023B1853).
摘 要:Microporous molecular crystals are promising materials because of their designable porosity as well as their resistance to chemical and other stimuli.Here,we developed microporous molecular cocrystals by taking advantage of the specific interactions between porphyrins and fullerene molecules.Single-crystal X-ray diffraction analysis revealed that one nickel(Ⅱ)porphyrin interacts with two fullerene molecules to form a two-dimensional honeycomb network with an eclipsed stacking mode,providing onedimensional void channels.After the pores were activated by heat treatment or mechanical grinding,the prepared cocrystal can incorporate gas and solvent molecules reversibly while maintaining its single-crystallinity.Also,it retained its single-crystallinity in the presence of water,acid−base,or high pressure.These findings in this study expand the availability of molecular crystals based on intermolecular interactions as porous materials,which are expected to work under conditions that have not been applicable to other molecule-based porous materials.
关 键 词:Microporous molecular crystal intermolecular interaction gas adsorption chemical stability high-pressure resistance
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