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通过热处理对镧系-联吡啶-金属有机框架材料的孔隙率和晶体结构进行合成后塑造。

Post-Synthetic Shaping of Porosity and Crystal Structure of Ln-Bipy-MOFs by Thermal Treatment.

作者信息

Matthes Philipp R, Schönfeld Fabian, Zottnick Sven H, Müller-Buschbaum Klaus

机构信息

Institute of Inorganic Chemistry, University of Würzburg, Am Hubland, 97074 Würzburg, Germany.

出版信息

Molecules. 2015 Jul 3;20(7):12125-53. doi: 10.3390/molecules200712125.

Abstract

The reaction of anhydrous lanthanide chlorides together with 4,4'-bipyridine yields the MOFs 2∞[Ln2Cl6(bipy)3]·2bipy, with Ln = Pr - Yb, bipy = 4,4'-bipyridine, and 3∞[La2Cl6(bipy)5]·4bipy. Post-synthetic thermal treatment in combination with different vacuum conditions was successfully used to shape the porosity of the MOFs. In addition to the MOFs microporosity, a tuneable mesoporosity can be implemented depending on the treatment conditions as a surface morphological modification. Furthermore, thermal treatment without vacuum results in several identifiable crystalline high-temperature phases. Instead of collapse of the frameworks upon heating, further aggregation under release of bipy is observed. 3∞[LaCl3(bipy)] and 2∞[Ln3Cl9(bipy)3], with Ln = La, Pr, Sm, and 1∞[Ho2Cl6(bipy)2] were identified and characterized, which can also exhibit luminescence. Besides being released upon heating, the linker 4,4'-bipyridine can undergo activation of C-C bonding in ortho-position leading to the in-situ formation of 4,4':2',2'':4'',4'''-quaterpyridine (qtpy). qtpy can thereby function as linker itself, as shown for the formation of the network 2∞[Gd2Cl6(qtpy)2(bipy)2]·bipy. Altogether, the manuscript elaborates the influence of thermal treatment beyond the usual activation procedures reported for MOFs.

摘要

无水镧系氯化物与4,4'-联吡啶反应生成金属有机框架2∞[Ln2Cl6(bipy)3]·2bipy(其中Ln = Pr - Yb,bipy = 4,4'-联吡啶)和3∞[La2Cl6(bipy)5]·4bipy。合成后结合不同真空条件进行热处理成功用于塑造这些金属有机框架的孔隙率。除了金属有机框架的微孔率外,根据处理条件还可实现可调谐的中孔率,作为一种表面形态修饰。此外,无真空的热处理会产生几种可识别的结晶高温相。加热时框架并未坍塌,而是观察到在联吡啶释放的情况下进一步聚集。已鉴定并表征了3∞[LaCl3(bipy)]、2∞[Ln3Cl9(bipy)3](其中Ln = La、Pr、Sm)和1∞[Ho2Cl6(bipy)2],它们也可表现出发光特性。除了在加热时释放外,连接体4,4'-联吡啶可在邻位发生C-C键活化,导致原位形成4,4':2',2'':4'',4'''-四吡啶(qtpy)。qtpy本身可作为连接体,如网络2∞[Gd2Cl6(qtpy)2(bipy)2]·bipy的形成所示。总之,该论文阐述了热处理对金属有机框架的影响,超出了通常报道的活化程序。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80b8/6332306/a6e0b614638f/molecules-20-12125-g001.jpg

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