Savastano Matteo, Arranz-Mascarós Paloma, Bazzicalupi Carla, Clares Maria Paz, Godino-Salido Maria Luz, Guijarro Lluis, Gutiérrez-Valero Maria Dolores, Bianchi Antonio, García-España Enrique, López-Garzón Rafael
Department of Chemistry "Ugo Schiff", University of Florence, 50019 Sesto Fiorentino, Italy.
Department of Inorganic and Organic Chemistry, University of Jaén, 23071 Jaén, Spain.
ACS Omega. 2017 Jul 25;2(7):3868-3877. doi: 10.1021/acsomega.7b00736. eCollection 2017 Jul 31.
The binding properties of HL1, HL2, and HL3 ligands toward Cu(II) and Zn(II) ions, constituted by tetraaza-macrocyclic rings decorated with pyrimidine pendants, were investigated by means of potentiometric and UV spectrophotometric measurements in aqueous solution, with the objective of using the related HL-M(II) (HL = HL1-HL3; M = Cu, Zn) complexes for the preparation of hybrid MWCNT-HL-M(II) materials based on multiwalled carbon nanotubes (MWCNTs), through an environmentally friendly noncovalent procedure. As shown by the crystal structure of Cu(HL1), metal coordination takes place in the macrocyclic ring, whereas the pyrimidine residue remains available for attachment onto the surface of the MWCNTs via π-π stacking interactions. On the basis of equilibrium data showing the formation of highly stable Cu(II) complexes, the MWCNT-HL1-Cu(II) material was prepared and characterized. This compound proved very stable toward lixiviation processes (release of HL1 and/or Cu(II)); thus, it was used for the preparation of its reduced MWCNT-HL1-Cu(0) derivatives. X-ray photoelectron spectroscopy and transmission electron microscopy images showed that MWCNT-HL1-Cu(0) contains Cu(0) nanoparticles, of very small (less than 5 nm) and regular size, uniformly distributed over the surface of the MWCNTs. Also, the MWCNT-HL1-Cu(0) material proved very resistant to detachment of its components. Accordingly, both MWCNT-HL1-Cu(II) and MWCNT-HL1-Cu(0) are promising candidates for applications in heterogeneous catalysis.
通过在水溶液中进行电位滴定和紫外分光光度测量,研究了由嘧啶侧链修饰的四氮杂大环构成的HL1、HL2和HL3配体与铜(II)和锌(II)离子的结合特性,目的是利用相关的HL-M(II)(HL = HL1-HL3;M = Cu,Zn)配合物,通过环境友好的非共价方法制备基于多壁碳纳米管(MWCNT)的MWCNT-HL-M(II)杂化材料。如Cu(HL1)的晶体结构所示,金属配位发生在大环中,而嘧啶残基可通过π-π堆积相互作用附着在MWCNT表面。基于显示形成高度稳定的铜(II)配合物的平衡数据,制备并表征了MWCNT-HL1-Cu(II)材料。该化合物对浸析过程(HL1和/或铜(II)的释放)非常稳定;因此,它被用于制备其还原的MWCNT-HL1-Cu(0)衍生物。X射线光电子能谱和透射电子显微镜图像表明,MWCNT-HL1-Cu(0)包含尺寸非常小(小于5nm)且规则的铜(0)纳米颗粒,均匀分布在MWCNT表面。此外,MWCNT-HL1-Cu(0)材料的成分非常抗分离。因此,MWCNT-HL1-Cu(II)和MWCNT-HL1-Cu(0)都是多相催化应用中有前景的候选材料。