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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Low-Temperature Solution-Phase Synthesis of NiAu Alloy Nanoparticles via Butyllithium Reduction: Influences of Synthesis Details and Application As the Precursor to Active Au-NiO/SiO2 Catalysts through Proper Pretreatment
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Low-Temperature Solution-Phase Synthesis of NiAu Alloy Nanoparticles via Butyllithium Reduction: Influences of Synthesis Details and Application As the Precursor to Active Au-NiO/SiO2 Catalysts through Proper Pretreatment

机译:丁基锂还原低温液相法合成NiAu合金纳米粒子:合成细节的影响以及适当预处理对活性Au-NiO / SiO2催化剂作为前体的应用

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摘要

Bimetallic nanoparticles (NPs) have wide applications in electronics, photonics, and catalysis. However, it is particularly challenging to synthesize size-controllable alloy nanoparticles (e.g., NiAu) with bulk immiscible metals as the components. Here we report the synthesis of isolable NiAu alloy nanoparticles with tunable and relatively uniform sizes via a coreduction method employing butyllithium as the reducing agent and trioctylphosphine as the protecting agent. The influences of synthesis conditions (e.g., protecting agent, aging temperature, and the solvent used to wash the product) were investigated, and the synthesis mechanism was preliminarily surveyed. The NiAu alloy nanoparticles obtained were then used as the precursor to prepare an Au-NiO/SiO2 catalyst highly active in low-temperature CO oxidation, and the effects of pretreatment details and catalyst compositions on catalytic activity were studied. Relevant characterization employing XRD, TEM, UV-vis, TG/DTG, and FT-IR was conducted. In addition, the importance of the current synthesis of NiAu alloy NPs and the contribution of the catalyst design were discussed in the context of the literature.
机译:双金属纳米颗粒(NPs)在电子,光子学和催化领域具有广泛的应用。然而,以块状不混溶金属作为组分合成尺寸可控的合金纳米颗粒(例如,NiAu)特别具有挑战性。在这里,我们报告了一种可溶的NiAu合金纳米颗粒的合成,该纳米颗粒通过使用丁基锂作为还原剂,三辛基膦作为保护剂的共芯法合成尺寸可调且相对均匀的NiAu合金纳米颗粒。研究了合成条件(例如保护剂,老化温度和用于洗涤产物的溶剂)的影响,并初步研究了合成机理。然后,将获得的NiAu合金纳米颗粒用作前驱体,以制备在低温CO氧化中具有高活性的Au-NiO / SiO2催化剂,并研究了预处理工艺和催化剂组成对催化活性的影响。使用XRD,TEM,UV-vis,TG / DTG和FT-IR进行了相关表征。此外,在文献中讨论了当前合成NiAu合金NPs的重要性和催化剂设计的贡献。

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