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自组装和尺寸选择性合成嵌入有序介孔碳和聚合物骨架中的 Ni 和 NiO 纳米粒子。

Self-assembling and size-selective synthesis of Ni and NiO nanoparticles embedded in ordered mesoporous carbon and polymer frameworks.

机构信息

Department of Chemistry, Shanghai Normal University, Shanghai, PR China.

出版信息

Chemistry. 2011 Nov 25;17(48):13461-72. doi: 10.1002/chem.201101644. Epub 2011 Oct 20.

Abstract

We demonstrate the self-assembling and size-selective synthesis of uniform and highly dispersed Ni or NiO nanoparticles with diameters below 12 nm embedded in ordered mesoporous carbon or polymer frameworks. Self-assembly is induced by evaporation of the solvent from a mixture of metal-containing liquid crystalline (LC) mesophases of triblock copolymer and transition metal nitrate hydrate, and the carbon source is low-polymerized phenolic resol. Characterization by XRD, N(2) sorption isotherms, TEM, HRSEM, ICP-AES, TG, and XPS techniques has indicated an ordered 2D hexagonal mesostructure, high surface areas between 524 and 721 m(2) g(-1), uniform pore sizes of about 4.0 nm, large pore volumes ranging from 0.34 to 0.58 cm(3) g(-1), and metal contents ranging from 0.6 to 10.0 wt%. There is a high degree of dispersion, and a small size of nanoparticles throughout the whole framework, without aggregation outside of the pores due to the confinement effect of the mesoporous ordered matrix. The mesoporous solids show excellent adsorption properties for dyes and permit an easy magnetic separation procedure. This method is expected to be applicable to other mesoporous transition metal(oxide)-containing carbon catalysts.

摘要

我们展示了在溶剂从含有金属的两亲性嵌段共聚物和过渡金属硝酸盐水合物的液晶(LC)混合相中蒸发时,通过自组装和尺寸选择合成均匀且高度分散的直径小于 12nm 的 Ni 或 NiO 纳米粒子,并将其嵌入有序介孔碳或聚合物骨架中。碳源是低聚合酚醛树脂。通过 XRD、N2 吸附等温线、TEM、高分辨率扫描电子显微镜(HRSEM)、ICP-AES、TG 和 XPS 技术的表征表明具有有序的 2D 六方介孔结构,表面积在 524 和 721 m2/g 之间,均匀的孔径约为 4.0nm,孔体积在 0.34 到 0.58cm3/g 之间,金属含量在 0.6 到 10.0wt%之间。纳米粒子在整个骨架中具有高度分散性和较小的尺寸,由于介孔有序基质的限制效应,不会在孔外聚集。介孔固体对染料表现出优异的吸附性能,并允许进行简单的磁分离过程。该方法有望适用于其他介孔过渡金属(氧化物)含碳催化剂。

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