首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Role of microporous Janus silica nanosheets in the assembly of ultra-small Ag nanoparticles with high catalytic activity
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Role of microporous Janus silica nanosheets in the assembly of ultra-small Ag nanoparticles with high catalytic activity

机译:微孔Janus Silica Nanoshs在具有高催化活性的超小型Ag纳米粒子组装中的作用

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摘要

As an emerging nano-silica material, two-dimensional (2D) silica nanosheets (SiNSs) have been derived from natural layered kaolinite and applied as a substrate for the highly efficient and dispersed assembly of functional materials, such as noble metal nanoparticles (NPs). In this work, the nature of SiNSs and its particular role in the assembly of ultra-small AgNPs via the reduction-growth method using a Sn(ii) reductant were further researched. By adjusting the Sn(ii) content x (1.2-6.0 wt%), it was found that the surface areas of the Sn(ii)-activated SiNSs (xSn-SiNSs) had almost no change, and their reducibility did not fully increase with the increased x values, due to the saturated adsorption of the Sn(ii) reductant by the surface hydroxyls of the SiNSs, which subsequently caused the decrease of the adsorbed Ag(i) precursor by the hydroxyls on the xSn-SiNSs (x >= 4.8 wt%). Accordingly, the sizes and loading amounts of the resultant AgNPs mainly showed a similar trend of increase before decrease. Furthermore, the regulated AgNPs with diverse mean sizes ranging from 1.71 to 2.16 nm were all ultra-small (more than half were nanoclusters < 2 nm) and highly dispersed, owing to the high electrostatic attraction of the negatively charged hydroxyls and the anchoring effect of the micropores on the hydroxylated surface of the Janus SiNSs. Therefore, the Ag/xSn-SiNSs nanocomposites displayed better catalytic properties for 4-nitrophenol reduction than most Ag-based supported catalysts, and the optimal Ag/2.4Sn-SiNSs catalyst exhibited quick reaction within 80 s and turnover frequency (TOF) of 3.34 min(-1). It reveals the key role of negatively charged surface hydroxyls and micropores of Janus SiNSs in the highly efficient and dispersed assembly of functional materials.
机译:作为一种新兴的纳米二氧化硅材料,二维(2D)二氧化硅纳米片(SINS)由天然层状高岭石衍生而来,并被用作高效分散组装贵金属纳米颗粒(NPs)等功能材料的基底。在这项工作中,我们进一步研究了sins的性质及其在通过Sn(ii)还原剂还原生长法组装超小AgNPs中的特殊作用。通过调整Sn(ii)含量x(1.2-6.0 wt%),发现Sn(ii)活化的SiNs(xSn-SiNs)的表面积几乎没有变化,并且它们的还原性没有随着x值的增加而完全增加,这是因为Sn(ii)还原剂被SiNs的表面羟基饱和吸附,随后,xSn SINS上的羟基导致吸附的Ag(i)前体减少(x>=4.8 wt%)。因此,合成的AgNP的大小和负载量主要表现出类似的先增大后减小的趋势。此外,由于带负电荷的羟基的高静电吸引力和Janus SiNSs羟基化表面上微孔的锚定效应,平均尺寸在1.71到2.16 nm之间的受调控AgNP都是超小的(超过一半是<2 nm的纳米团簇)和高度分散的。因此,Ag/xSn-SiNSs纳米复合材料对4-硝基苯酚的还原性能优于大多数Ag基负载型催化剂,最佳Ag/2.4Sn-SiNSs催化剂在80s内反应迅速,转换频率(TOF)为3.34min(-1)。它揭示了Janus SiNSs带负电的表面羟基和微孔在功能材料高效分散组装中的关键作用。

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    Xinyang Normal Univ Coll Chem &

    Chem Engn Henan Prov Key Lab Utilizat Nonmet Mineral South Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Coll Chem &

    Chem Engn Henan Prov Key Lab Utilizat Nonmet Mineral South Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Coll Chem &

    Chem Engn Henan Prov Key Lab Utilizat Nonmet Mineral South Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Coll Chem &

    Chem Engn Henan Prov Key Lab Utilizat Nonmet Mineral South Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Coll Chem &

    Chem Engn Henan Prov Key Lab Utilizat Nonmet Mineral South Xinyang 464000 Peoples R China;

    Xinyang Normal Univ Coll Chem &

    Chem Engn Henan Prov Key Lab Utilizat Nonmet Mineral South Xinyang 464000 Peoples R China;

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  • 正文语种 eng
  • 中图分类 化学;无机化学;
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