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首页> 外文期刊>Chemical engineering journal >In situ preparation of core-satellites nanostructural magnetic-Au NPs composite for catalytic degradation of organic contaminants
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In situ preparation of core-satellites nanostructural magnetic-Au NPs composite for catalytic degradation of organic contaminants

机译:原位制备核-核纳米结构磁性-Au NPs复合材料以催化降解有机污染物

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In this work, core-satellites nanostructural composites have been synthesized through self-assembly combined with in situ growth strategy for catalytic degradation of common organic contaminants. At first, a three-component microsphere catalyst support containing alkyl-functionalized Fe3O4 magnetite core and a layered chitosan (CTS) shell has been constructed for loading of gold nanoparticles (Au NPs). Wherein, the Fe3O4 microsphere core is in favor for recycling and the formation of a hexadecyltri-methoxysilance@CTS (C_(16)@CTS) layer effectively increases its surface area and provides more docking sites for small Au satellite NPs to construct core-satellites nanostructure. Through electrostatic interaction and coordination, small Au NPs automatically assembled on the surface of support which served as seeds for further in situ growth of bigger stable Au NPs. The obtained catalyst was stable and had enhanced performance for fast catalytic reduction and fading of common organic contaminants, including 4-nitrophenol (4-NP), methylene blue (MB), Congo red (CR), rhodamine B (RhB), rhodamine 6G (R6G), acid orange (AO) and methyl orange (MO). No significant inactivation of the catalyst was observed even after recycling for eleven cycles or stored for more than 1 month. In addition, the catalyst was used for effective degradation of organic pollutant in Yellow River water sample, which indicated its potential for practical applications in water pollutant removal and environmental remediation.
机译:在这项工作中,通过自组装结合原位生长策略合成了核心卫星纳米结构复合材料,以催化降解常见的有机污染物。首先,已经构建了包含烷基官能化的Fe3O4磁铁矿核和层状壳聚糖(CTS)壳的三组分微球催化剂载体,用于负载金纳米颗粒(Au NPs)。其中,Fe3O4微球核有利于回收利用,十六烷基三甲氧基硅烷@CTS(C_(16)@CTS)层的形成有效地增加了其表面积,并为小型Au卫星NP提供了更多的对接位点,以构建卫星核心纳米结构。通过静电相互作用和配位,小的Au NPs自动组装在载体表面,作为种子,用于更大的稳定Au NPs的原位生长。所获得的催化剂稳定并具有增强的性能,可快速催化还原和褪色常见的有机污染物,包括4-硝基苯酚(4-NP),亚甲基蓝(MB),刚果红(CR),若丹明B(RhB),若丹明6G (R6G),酸性橙(AO)和甲基橙(MO)。即使在循环十一次或储存超过1个月后,也未观察到催化剂的明显失活。此外,该催化剂还用于有效降解黄河水样中的有机污染物,表明其在水污染物去除和环境修复中的实际应用潜力。

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