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Mechanochemical and thermal formation of 1H-benzotriazole coordination polymers and complexes of 3d-transition metals with intriguing dielectric properties

机译:介电性能优异的1H-苯并三唑配位聚合物和3d-过渡金属配合物的机械化学和热形成

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摘要

Liquid-assisted grinding (LAG) reactions have been successfully applied to achieve a series of complexes and coordination polymers based on divalent 3d-transition metal chlorides (TM chlorides) and the aromatic ligand 1H-benzotriazole (BtzH). The obtained substances were investigated via single crystal X-ray, powder X-ray determination and simultaneous DTA/TG analysis as model compounds for structural and chemical influences on their dielectric properties. Depending on the synthesis method, different constitutions and structures are observed. Two polymorphous forms of the 1D polymer (1)(infinity)[MnCl2(BtzH)(2)] (1 and 2) as well as the complexes [ZnCl2(BtzH)(2)]center dot BtzH (3) and [CoCl2(BtzH)(2)]center dot BtzH (4) have been obtained as phase-pure bulk substances via the mechanochemical LAG route, and even single crystals are available. For comparison, thermal reactions were also carried out and have led to the formation of the neutral complexes: [CoCl2(BtzH)(2)] (5) and [CoCl2(BtzH)(4)]center dot 4BtzH (6), [ZnCl2(BtzH)(2)] (7) and the anionic complex BtzH(2)[CoCl(3)BtzH] (8). In addition, thermal treatment of 3 yields the benzotriazolium salt {(BtzH)(2)H}Cl (9). The transition metal compounds were additionally analysed regarding their dielectric properties by frequency-dependent as well as temperature-dependent permittivity investigations. It is intriguing that compounds 1 and 3 show remarkably low dielectric constants and loss factors up to 50 degrees C highlighting them as potential "low-k materials".
机译:液体辅助研磨(LAG)反应已成功应用于基于二价3d-过渡金属氯化物(TM氯化物)和芳香族配体1H-苯并三唑(BtzH)的一系列配合物和配位聚合物。通过单晶X射线,粉末X射线测定和同时进行的DTA / TG分析,对作为模型化合物的所得物质进行了结构和化学对其介电性能的影响。根据合成方法,观察到不同的组成和结构。一维聚合物(1)(无穷大)[MnCl2(BtzH)(2)](1和2)以及配合物[ZnCl2(BtzH)(2)]中心点BtzH(3)和[CoCl2 (BtzH)(2)]中心点BtzH(4)已通过机械化学LAG途径作为纯相的块状物质获得,甚至可以使用单晶。为了进行比较,还进行了热反应,并导致形成中性配合物:[CoCl2(BtzH)(2)](5)和[CoCl2(BtzH)(4)]中心点4BtzH(6),[ ZnCl2(BtzH)(2)](7)和阴离子络合物BtzH(2)[CoCl(3)BtzH](8)。此外,热处理3会生成苯并三唑盐{(BtzH)(2)H} Cl(9)。还通过频率和介电常数研究了过渡金属化合物的介电性能。令人着迷的是,化合物1和3的介电常数非常低,在高达50摄氏度的温度下损耗因子很高,这使它们成为潜在的“低k材料”。

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