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含 Bpe 客体分子的首例杂化钒酸盐的热响应、催化活性和颜色变化。

Thermal response, catalytic activity, and color change of the first hybrid vanadate containing Bpe guest molecules.

机构信息

Departamento de Mineralogía y Petrología, Facultad de Ciencia y Tecnología, Universidad del País Vasco, UPV/EHU, Apdo. 644, E-48080 Bilbao, Spain.

出版信息

Inorg Chem. 2013 Mar 4;52(5):2615-26. doi: 10.1021/ic302662x. Epub 2013 Feb 14.

Abstract

Four isomorphic compounds with formula [{Co2(H2O)2(Bpe)2}(V4O12)]·4H2O·Bpe, CoBpe 1; [{CoNi(H2O)2(Bpe)2}(V4O12)]·4H2O·Bpe, CoNiBpe 2; [{Co0.6Ni1.4(H2O)2(Bpe)2}(V4O12)]·4H2O·Bpe, NiCoBpe 3; and [{Ni2(H2O)2(Bpe)2}(V4O12)]·4H2O·Bpe, NiBpe 4, have been obtained by hydrothermal synthesis. The crystal structures of CoBpe 1 and NiBpe 4 were determined by single-crystal X-ray diffraction (XRD). The Rietveld refinement of CoNiBpe 2 and NiCoBpe 3 XRD patterns confirms that those are isomorphic. The compounds crystallize in the P1̅ space group, exhibiting a crystal structure constructed from inorganic layers pillared by Bpe ligands. The crystal structure contains intralayer and interlayer channels, in which the crystallization water molecules and Bpe guest molecules, respectively, are located. The solvent molecules establish a hydrogen bonding network with the coordinated water molecules. Thermodiffractometric and thermogravimetric studies showed that the loss of crystallization and coordinated water molecules takes place at different temperatures, giving rise to crystal structure transformations that involve important reduction of the interlayer distance, and strong reduction of crystallinity. The IR, Raman, and UV-vis spectra of the as-synthesized and heated compounds confirm that the structural building blocks and octahedral coordination environment of the metal centers are maintained after the structural transformations. The color change and reversibility of the water molecules uptake/removal were tested showing that the initial color is not completely recovered when the compounds are heated at temperatures higher than 200 °C. The thermal evolution of the magnetic susceptibility indicates one-dimensional antiferromagnetic coupling of the metal centers at high temperatures. For NiCoBpe 3 and NiBpe 4 compounds magnetic ordering is established at low temperatures, as can be judged by the maxima observed in the magnetic susceptibilities. CoNiBpe 2 was proved as catalyst being active for cyanosilylation reactions of aldehydes.

摘要

四种同构化合物,化学式为[{Co2(H2O)2(Bpe)2}(V4O12)]·4H2O·Bpe,CoBpe 1;[{CoNi(H2O)2(Bpe)2}(V4O12)]·4H2O·Bpe,CoNiBpe 2;[{Co0.6Ni1.4(H2O)2(Bpe)2}(V4O12)]·4H2O·Bpe,NiCoBpe 3;和[{Ni2(H2O)2(Bpe)2}(V4O12)]·4H2O·Bpe,NiBpe 4,通过水热合成得到。通过单晶 X 射线衍射(XRD)确定了 CoBpe 1 和 NiBpe 4 的晶体结构。对 CoNiBpe 2 和 NiCoBpe 3 的 XRD 图谱进行 Rietveld 精修,证实它们是同构的。这些化合物结晶在 P1̅空间群中,呈现出由无机层和 Bpe 配体支撑的晶体结构。晶体结构包含层内和层间通道,分别位于结晶水分子和 Bpe 客体分子。溶剂分子与配位水分子建立氢键网络。热差热和热重研究表明,结晶水和配位水分子的损失发生在不同的温度下,导致晶体结构的转变,涉及层间距离的显著减小和结晶度的强烈降低。合成和加热后的化合物的红外、拉曼和紫外可见光谱证实,金属中心的结构构建块和八面体配位环境在结构转变后得以保持。对水合/脱水产品的颜色变化和可逆性进行了测试,表明当化合物在高于 200°C 的温度下加热时,初始颜色不会完全恢复。磁化率的热演化表明金属中心在高温下具有一维反铁磁耦合。对于 NiCoBpe 3 和 NiBpe 4 化合物,低温下建立了磁有序,可以从磁化率观察到的最大值判断。CoNiBpe 2 被证明是醛氰硅烷化反应的催化剂,具有活性。

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