Ipadeola Adewale K, Salah Belal, Ghanem Alaa, Ahmadaliev Doniyorbek, Sharaf Mohammed A, Abdullah Aboubakr M, Eid Kamel
Center for Advanced Materials, Qatar University, Doha, 2713, Qatar.
Gas Processing Center (GPC), College of Engineering, Qatar University, Doha, 2713, Qatar.
Heliyon. 2023 Jun 2;9(6):e16890. doi: 10.1016/j.heliyon.2023.e16890. eCollection 2023 Jun.
Morphologically controlled Pd-based nanocrystals are the most efficient strategies for improving the electrocatalytic ethanol oxidation reaction (EOR) performance; however, their morphological-EOR activity relationship and effect of electrolytes at a wide pH range are still ambiguous. Here, we have synthesized porous self-standing Pd clustered nanospheres (Pd-CNSs) and Pd nanocubes (Pd-NCBs) for the EOR in acidic (HSO), alkaline (KOH), and neutral (NaHCO) electrolytes compared to commercial spherical-like Pd/C catalysts. The fabrication process comprises the ice-cooling reduction of Pd precursor by sodium borohydride (NaBH) and l-ascorbic acid to form Pd-CNSs and Pd-NCBs, respectively. The EOR activity of Pd-CNSs significantly outperformed those of Pd-NCBs, and Pd/C in all electrolytes, but the EOR activity was better in KOH than in HSO and NaHCO. This is due to the 3D porous clustered nanospherical morphology that makes Pd active centers more accessible and maximizes their utilization during EOR. The EOR specific/mass activities of Pd-CNSs reached (8.51 mA/cm/2.39 A/mg) in KOH, (2.98 mA/cm/0.88 A/mg) in HSO, and (0.061 mA/cm/0.0083 A/mg) in NaHCO, in addition to stability after 1000 cycles. This study affirms that porous 3D spherical Pd nanostructures are preferred for the EOR than those of 0D spherical-like and multi-dimensional cube-like nanostructures.
形态可控的钯基纳米晶体是提高电催化乙醇氧化反应(EOR)性能的最有效策略;然而,它们的形态与EOR活性之间的关系以及在较宽pH范围内电解质的影响仍不明确。在这里,我们合成了多孔自立式钯簇纳米球(Pd-CNSs)和钯纳米立方体(Pd-NCBs),用于在酸性(HSO)、碱性(KOH)和中性(NaHCO)电解质中进行EOR,并与商业球形钯碳催化剂进行比较。制备过程包括分别用硼氢化钠(NaBH)和L-抗坏血酸对钯前驱体进行冰冷却还原,以形成Pd-CNSs和Pd-NCBs。在所有电解质中,Pd-CNSs的EOR活性显著优于Pd-NCBs和Pd/C,但在KOH中的EOR活性优于HSO和NaHCO。这是由于三维多孔簇状纳米球形态使钯活性中心更容易接近,并在EOR过程中使其利用率最大化。Pd-CNSs在KOH中的EOR比活性/质量活性达到(8.51 mA/cm/2.39 A/mg),在HSO中为(2.98 mA/cm/0.88 A/mg),在NaHCO中为(0.061 mA/cm/0.0083 A/mg),此外在1000次循环后仍具有稳定性。这项研究证实,对于EOR而言,多孔三维球形钯纳米结构比零维球形和多维立方体形纳米结构更具优势。