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Controlled Crystallization of Cyano‐Bridged Cu–Pt Coordination Polymers with Two‐Dimensional Morphology 下载免费PDF全文
Mohamed B. Zakaria Dr. Ming Hu Dr. Yoshihiro Tsujimoto Prof. Yoshio Sakka Dr. Norihiro Suzuki Yuichiro Kamachi Dr. Masataka Imura Dr. Shinsuke Ishihara Prof. Katsuhiko Ariga Prof. Yusuke Yamauchi 《化学:亚洲杂志》2014,9(6):1511-1514
Two‐dimensional (2D) coordination polymers (CPs) have a highly accessible surface area that permits guest molecules to effectively access the micropores in the CPs. Here we report a bottom‐up synthesis of 2D cyano‐bridged Cu–Pt CP nanoflakes using trisodium citrate as a chelating agent, which controls the nucleation rate and the crystal growth. The lateral sizes of the CP nanoflakes are controlled by changing the amount of trisodium citrate used. We strongly believe that our method will be useful for the preparation of other types of 2D CP nanoflakes. The 2D CPs have many active sites for catalytic and electrochemical reactions, and furthermore the assembled CPs can be used as membrane filters. 相似文献
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Kasper S. Pedersen Giulia Lorusso Juan Jos Morales Thomas Weyhermüller Stergios Piligkos Saurabh Kumar Singh Dennis Larsen Magnus Schau‐Magnussen Gopalan Rajaraman Marco Evangelisti Jesper Bendix 《Angewandte Chemie (Weinheim an der Bergstrasse, Germany)》2014,126(9):2426-2429
The reaction of fac‐[MIIIF3(Me3tacn)]⋅x H2O with Gd(NO3)3⋅5H2O affords a series of fluoride‐bridged, trigonal bipyramidal {GdIII3MIII2} (M=Cr ( 1 ), Fe ( 2 ), Ga ( 3 )) complexes without signs of concomitant GdF3 formation, thereby demonstrating the applicability even of labile fluoride‐complexes as precursors for 3d–4f systems. Molecular geometry enforces weak exchange interactions, which is rationalized computationally. This, in conjunction with a lightweight ligand sphere, gives rise to large magnetic entropy changes of 38.3 J kg−1 K−1 ( 1 ) and 33.1 J kg−1 K−1 ( 2 ) for the field change 7 T→0 T. Interestingly, the entropy change, and the magnetocaloric effect, are smaller in 2 than in 1 despite the larger spin ground state of the former secured by intramolecular Fe–Gd ferromagnetic interactions. This observation underlines the necessity of controlling not only the ground state but also close‐lying excited states for successful design of molecular refrigerants. 相似文献
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