Modular Assembly, fluorescent and magnetic properties of a series of non-symmetric binuclear lanthanide complexes

IF 2.4 3区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR
Quan-Bo Wang , Jia-Feng Gao , Fan-Ye Kong, Guo-Xu Li, Shu-Ying Luo, Kai Wang
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引用次数: 0

Abstract

As a kind of lanthanide complex with special molecular structures, non-symmetric binuclear lanthanide complexes ({Ln2}) feature two Ln centers with distinct coordination geometries, and have showed some unique properties that common symmetric {Ln2} could not achieved. Yet, there is still great difficult in their direct synthesis, and most of them were obtained through a serendipitous way. In this work, a series of non-symmetric {Ln2}, namely, [Ln2(bbpen)(hfac)4] [Ln = Eu (1), Tb (2) and Dy (3); H2bbpen = N, N′-bis(2-hydroxybenzyl)-N, N′-bis(2-picolyl)ethylene diamine; hfac = 1,1,1,5,5,5-hexafluoroacetylacetonate ion], have been synthesized by a modular assembly approach successfully. This is the first application of modular assembly approach in the synthesis of non-symmetric {Ln2}. A [Ln(hfac)3(H2O)2] complex precursor and a mononuclear Ln module built by a bbpen2− ligand were assembled together by coordination substitution reaction between them, forming a kind of non-symmetric {Ln2} structure where two Ln ions featuring distinct coordination geometries are dual-bridged by two Ophenolato atoms. The fluorescence spectra of 1 and 2 show characteristic emission peaks belonging to Eu- and Tb-based transitions, respectively. In particular, 1 presents a bright red emission. The static and dynamic magnetic properties of 3 were investigated. It is revealed that 3 possesses typical dual-relaxation behavior of non-symmetric {Ln2} single molecule magnets (SMMs).

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来源期刊
Polyhedron
Polyhedron 化学-晶体学
CiteScore
4.90
自引率
7.70%
发文量
515
审稿时长
2 months
期刊介绍: Polyhedron publishes original, fundamental, experimental and theoretical work of the highest quality in all the major areas of inorganic chemistry. This includes synthetic chemistry, coordination chemistry, organometallic chemistry, bioinorganic chemistry, and solid-state and materials chemistry. Papers should be significant pieces of work, and all new compounds must be appropriately characterized. The inclusion of single-crystal X-ray structural data is strongly encouraged, but papers reporting only the X-ray structure determination of a single compound will usually not be considered. Papers on solid-state or materials chemistry will be expected to have a significant molecular chemistry component (such as the synthesis and characterization of the molecular precursors and/or a systematic study of the use of different precursors or reaction conditions) or demonstrate a cutting-edge application (for example inorganic materials for energy applications). Papers dealing only with stability constants are not considered.
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