State Key Laboratory of Coordination Chemistry, Coordination Chemistry Institute, Nanjing National Laboratory of Microstructures, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, P. R. China.
Nanoscale. 2013 Dec 21;5(24):12224-30. doi: 10.1039/c3nr03371f.
In this study, a topotactic transformation route was proposed to synthesize single-crystalline β-NiS hollow spheres with uniform phase and morphology evolving from polycrystalline α-NiS hollow spheres. Uniform polycrystalline α-NiS hollow spheres were firstly prepared with thiourea and glutathione as sulfur sources under hydrothermal conditions through the Kirkendall effect. By increasing the reaction temperature the polycrystalline α-NiS hollow spheres were transformed to uniform β-NiS hollow spheres. The β-NiS crystals obtained through the topotactic transformation route not only have unchanged morphology of hollow spheres but are also single-crystalline in nature. The as-prepared NiS hollow spheres display a good ability to remove the organic pollutant Congo red from water, which makes them have application potential in water treatment.
在这项研究中,提出了一种位向转化途径来合成具有均匀相和形态演变的单晶β-NiS 空心球,其前体是多晶α-NiS 空心球。首先,通过水热法,以硫脲和谷胱甘肽为硫源,利用 Kirkendall 效应制备了均匀的多晶α-NiS 空心球。通过提高反应温度,将多晶α-NiS 空心球转化为均匀的β-NiS 空心球。通过位向转化途径获得的β-NiS 晶体不仅保持了空心球的形貌不变,而且还是单晶的。所制备的 NiS 空心球对水中有机污染物刚果红具有很好的去除能力,这使得它们在水处理方面具有应用潜力。