Zedan Abdallah F, Gaber Safa, AlJaber Amina S, Polychronopoulou Kyriaki
National Institute of Laser Enhanced Science, Cairo University, Main Campus, Giza 12613, Egypt.
Center for Catalysis and Separations, Khalifa University of Science and Technology, Abu Dhabi P.O. Box 127788, United Arab Emirates.
Nanomaterials (Basel). 2021 Jun 25;11(7):1675. doi: 10.3390/nano11071675.
Significant improvement of the catalytic activity of palladium-based catalysts toward carbon monoxide (CO) oxidation reaction has been achieved through alloying and using different support materials. This work demonstrates the promoting effects of the nanointerface and the morphological features of the support on the CO oxidation reaction using a Pd-Cu/TiO catalyst. Pd-Cu catalysts supported on TiO were synthesized with wet chemical approaches and their catalytic activities for CO oxidation reaction were evaluated. The physicochemical properties of the prepared catalysts were studied using standard characterization tools including SEM, EDX, XRD, XPS, and Raman. The effects of the nanointerface between Pd and Cu and the morphology of the TiO support were investigated using three different-shaped TiO nanoparticles, namely spheres, nanotubes, and nanowires. The Pd catalysts that are modified through nanointerfacing with Cu and supported on TiO nanowires demonstrated the highest CO oxidation rates, reaching 100% CO conversion at temperature regime down to near-ambient temperatures of ~45 °C, compared to 70 °C and 150 °C in the case of pure Pd and pure Cu counterpart catalysts on the same support, respectively. The optimized Pd-Cu/TiO nanowires nanostructured system could serve as efficient and durable catalyst for CO oxidation at near-ambient temperature.
通过合金化和使用不同的载体材料,钯基催化剂对一氧化碳(CO)氧化反应的催化活性有了显著提高。这项工作利用Pd-Cu/TiO催化剂证明了纳米界面和载体的形态特征对CO氧化反应的促进作用。采用湿化学方法合成了负载在TiO上的Pd-Cu催化剂,并评估了它们对CO氧化反应的催化活性。使用包括SEM、EDX、XRD、XPS和拉曼在内的标准表征工具研究了制备催化剂的物理化学性质。使用三种不同形状的TiO纳米颗粒,即球体、纳米管和纳米线,研究了Pd和Cu之间的纳米界面以及TiO载体形态的影响。与在相同载体上的纯Pd和纯Cu对应催化剂分别在70°C和150°C时相比,通过与Cu进行纳米界面改性并负载在TiO纳米线上的Pd催化剂表现出最高的CO氧化速率,在低至约45°C的近环境温度范围内达到100%的CO转化率。优化后的Pd-Cu/TiO纳米线纳米结构体系可作为近环境温度下CO氧化的高效耐用催化剂。