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Sintering-resistant, highly thermally stable and well-dispersed Pd@CeO_2/halloysite as an advanced three-way catalyst

机译:烧结,高度热稳定且分散良好的PD @ CEO_2 / HolloySite作为先进的三元催化剂

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摘要

The high thermal stability of halloysite (H)-supported core-shell Pd@CeO_2 endowed it with promising catalytic performance and superior sintering resistance as a three-way catalyst. In this work, the synthesis of Pd@CeO_2 nanoparticles with various shell thicknesses was performed, and the properties of the shell and support were examined. From the results, the Pd@6CeO_2/H catalyst (Ce/Pd = 6) without any pretreatment or activation was achieved with a well-dispersed and optimal shell thickness of Pd@6CeO_2 nanoparticles to inhibit sintering and aggregation via electrostatic attractions with halloysite. Moreover, the halloysite support imparted thermal stability for enhanced catalytic stability under long-term and high-temperature reaction conditions compared with Pd@6CZ/H (cerium-zirconium shell) and Pd@6CeO_2/Al_2O_3 catalysts. To further ascertain the electronic effect on halloysite, Pd@6CeO_2/H-12 (halloysite solution at pH = 12) was prepared. The results showed that Pd@6CeO_2/H-12 enhanced the catalytic activity and decreased the light-off temperature compared with the other studied catalysts, and these results were attributed to the high content of Ce~(3+) and oxygen vacancies and the strong interaction between Pd@6CeO_2 and halloysite, making it a promising three-way catalyst.
机译:Halloysite(H)支持的核心壳PD @ CeO_2的高热稳定性赋予其具有有前途的催化性能和优异的烧结阻力作为三元催化剂。在这项工作中,进行了具有各种壳厚度的Pd @ CeO_2纳米颗粒的合成,检查壳和载体的性质。从结果中,通过PD @ 6CEO_2纳米颗粒的井分散和最佳的壳体厚度实现了没有任何预处理或活化的PD @ 6CEO_2 / H催化剂(CE / PD = 6),以抑制静脉磨光的静电吸附和聚集。此外,与Pd @ 6cz / h(铈 - 锆壳)和Pd @ 6CE_2 / Al_2O_3催化剂相比,霍罗伊氏铁矿石在长期和高温反应条件下提高了催化稳定性的热稳定性。为了进一步确定对Halloysite的电子效果,制备Pd @ 6CEO_2 / H-12(pH = 12的霍罗伊钛矿溶液)。结果表明,与其他研究催化剂相比,Pd @ 6CEO_2 / H-12增强了催化活性并降低了光脱液温度,并且这些结果归因于CE〜(3+)和氧空位的高含量和氧气空位。 PD @ 6CEO_2和Holloysite之间的强烈相互作用,使其成为有前途的三通催化剂。

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