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首页> 外文期刊>RSC Advances >An exclusive deposition method of silver nanoparticles on TiO2 particles via low-temperature decomposition of silver-alkyldiamine complexes in aqueous media
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An exclusive deposition method of silver nanoparticles on TiO2 particles via low-temperature decomposition of silver-alkyldiamine complexes in aqueous media

机译:银纳米粒子在水性介质中银 - 烷基二胺络合物低温分解的单独沉积方法

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摘要

An exclusive deposition method of Ag nanoparticles (NPs) on TiO _(2) particles has been developed. Ag NPs supported on TiO _(2) particles, Ag _( x ) /TiO _(2) , with various Ag weight ratios versus total weights of Ag and TiO _(2) between x = 2 and 16 wt% are prepared via low-temperature thermal decomposition of Ag( I )–alkyldiamine complexes generated by a reaction between AgNO _(3) and N , N -dimethyl-1,3-propanediamine (dmpda) in an aqueous medium suspending TiO _(2) particles. The thermal decomposition of the Ag( I )–alkyldiamine complexes is accelerated by TiO _(2) particles in the dark, indicating that the reaction catalytically occurs on the TiO _(2) surfaces. Under optimised reaction conditions, the thermal decomposition of the complex precursors is completed within 3 hours at 70 °C, and Ag NPs are almost exclusively deposited on TiO _(2) particles with high conversion efficiencies (≥95%) of the precursor complexes. The thermal decomposition rates of the precursor complexes are strongly influenced by the chemical structure of a family of water-soluble dmpda analogues, and dmpda with both primary and tertiary amino groups is adopted as a suitable candidate for the exclusive deposition method. The number-averaged particle sizes of the Ag NPs are 6.4, 8.4, 11.8 and 15.2 nm in the cases of Ag _( x ) /TiO _(2) , x = 2, 4, 8 and 16, respectively. To the best of our knowledge, the as-prepared Ag _( x ) /TiO _(2) samples show one of the highest catalytic abilities for the hydrogenation reduction of 4-nitrophenol into 4-aminophenol as a model reaction catalysed by Ag NPs.
机译:已经开发了TiO _(2)颗粒上的Ag纳米颗粒(NPS)的独占沉积方法。通过X = 2和16wt%之间的各种Ag重量比与X = 2和16wt%之间的各种Ag重量比的Ag _(X)/ TiO _(2)负载的Ag NPS。通过在含水介质中悬浮TiO_(2)颗粒的氮NO _(3)和N,N-二甲基-1,3-丙二胺(DMPDA)之间的反应产生的Ag(I)-Allyldia金刚石复合物的低温热分解。 Ag(I) - 烷基二胺配合物的热分解通过暗黑的TiO _(2)颗粒加速,表明反应催化在TiO _(2)表面上发生。在优化的反应条件下,复合前体的热分解在70℃下在3小时内完成,Ag NPS几乎完全沉积在具有高转化效率(≥95%)的前体配合物的TiO _(2)颗粒上。前体复合物的热分解率受到水溶性DMPDA类似物的化学结构的强烈影响,并且采用具有伯氨基和叔氨基的DMPDA作为专用沉积方法的合适候选者。在Ag _(X)/ TiO _(2),X = 2,4,8和16的情况下,Ag NP的数量平均粒径为6.4,8.4,11.8和15.2nm。据我们所知,AS制备的AG _(X)/ TiO _(2)样品显示出4-硝基苯酚的氢化降低至4-氨基苯酚的最高催化能力作为Ag NPs催化的模型反应。

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