首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >The facile soft-template-morphology-controlled (STMC) synthesis of ZnIn2S4 nanostructures and their excellent morphology-dependent adsorption properties
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The facile soft-template-morphology-controlled (STMC) synthesis of ZnIn2S4 nanostructures and their excellent morphology-dependent adsorption properties

机译:ZnIn2S4纳米结构的体形态 - 形态控制(STMC)合成及其优异的形态学依赖性吸附性能

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Fabricating nanostructures (NS) with well-developed morphologies and high surface areas is vital to the success of any designed material for its application in adsorption and catalysis. In this study, we prepared ZnIn2S4 NS with different morphologies using a soft-template-based precipitation method. X-ray diffraction data show that the NS are crystalline with a hexagonal structure. Field emission scanning electron microscopy suggests that the NS are formed with different morphologies, such as lamellar structures, nanobeads, and nanopetal/nanoflake hybrids. Moreover, transmission electron microscopy confirmed the lamellar structure, which was composed of vertically grown 2D nanosheets. Brunauer-Emmett-Teller analysis indicates the specific surface area (135.36 to 197.63 m(2) g(-1)) and pore width (1.41 to 4.54 nm) values of the NS vary with varying soft templates. The obtained NS have efficient adsorption performance towards malachite green dye and dichromate (Cr2O72-), with maximum adsorption capacities of 1525 and 313 mg g(-1), respectively, which are considerably higher than those of many other previously reported nanoadsorbents. The adsorption process follows the Freundlich isotherm model for the lamellar structure and the Langmuir isotherm model for the other morphologies. All adsorbents conformed to a pseudo-second-order rate kinetics model, and the best adsorbent could be recycled up to five times without significant loss of efficiency.
机译:具有发育良好的形态学和高表面积的纳米结构(NS)对于任何设计的材料的成功至关重要,以其在吸附和催化中的应用。在这项研究中,我们使用基于软模板的沉淀方法制备具有不同形态的Znin2S4 NS。 X射线衍射数据表明,NS是具有六边形结构的结晶。场发射扫描电子显微镜表明NS形成为不同的形态,例如层状结构,纳米珠铁和纳米氟烷/纳米氟纤维。此外,透射电子显微镜证实了由垂直生长的2D纳米晶片组成的层状结构。 Brunauer-Emmett-Teller分析表明,NS的比表面积(135.36至197.63m(2)G(-1))和孔宽(1.41至4.54nm)的变化变化,软模板不同。所获得的NS具有有效的吸附性能朝着孔雀石绿色染料和二分甲酸酯(CR2O72-),其分别具有1525和313mg G(-1)的最大吸附容量,其远高于许多其他先前报道的纳米坯料的吸附容量。吸附过程遵循用于层状结构的Freundlich等温模型和其他形态的Langmuir等温模型。所有吸附剂符合伪二阶率动力学模型,最佳吸附剂可以再循环多达五次,而不会损失效率。

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