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Morphological control of gold nanoparticles on exfoliated layers of layered double hydroxide: A reusable hybrid catalyst for the reduction of p- nitrophenol

机译:层状双氢氧化物剥落层上金纳米颗粒的形态控制:一种可重复使用的杂化催化剂,用于还原对硝基苯酚

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We have developed a controllable method for high density of ultrafine gold nanoparticles (NP) and their uniform aggregates on exfoliated nanosheet of layered double hydroxide (LDH). The LDH nanosheet effectively supports the growth of ultrafine gold NP because the freshly exfoliated hydroxide prevents the formation of large and irregular aggregation of gold NP. We found that the reduction conditions allowed controlling the sizes and morphologies of gold NP during their growth on LDH layers. Additionally, pre-added ascorbic acid effectively induced a narrow distribution of gold NP during their reduction reactions by NaBH 4 or hydrazine hydrate. This hybrid material exhibited excellent durability and catalytic activity ( 99% conversion efficiency) in the reduction of p-nitrophenol. The nanoscopic nature of exfoliated LDH nanosheets affects the catalytic performances of the hybrid catalyst, such as a high positive charge for strong binding to gold NP, and a fresh hydroxide surface for a good dispersion of the hybrid catalyst in reacting solutions. Our method can be very useful to make stable and reusable Au/LDH nanohybrids for a variety of applications.
机译:我们已经开发了一种可控制的方法,用于在层状双氢氧化物(LDH)的剥落纳米片上形成高密度的超细金纳米粒子(NP)及其均匀聚集体。 LDH纳米片有效地支持了超细金NP的生长,因为新鲜剥落的氢氧化物阻止了金NP的大而规则的聚集。我们发现还原条件可以控制金NP在LDH层上生长期间的大小和形态。另外,预添加的抗坏血酸在通过NaBH 4或水合肼进行的还原反应中有效诱导了金NP的狭窄分布。这种杂化材料在对硝基苯酚的还原反应中具有出色的耐久性和催化活性(转化率> 99%)。剥落的LDH纳米片的纳米性质会影响杂化催化剂的催化性能,例如高正电荷以牢固结合金NP,新的氢氧化物表面使杂化催化剂良好地分散在反应溶液中。我们的方法对于制造稳定且可重复使用的Au / LDH纳米杂物,可用于多种应用非常有用。

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