State Key Laboratory of Solidification Processing, Northwestern Polytechnical University, Xi'an 710072, China.
School of Materials Science and Engineering, Northwestern Polytechnical University, Xi'an, 710072, China.
Nanoscale. 2023 Apr 13;15(15):7032-7043. doi: 10.1039/d2nr06637h.
The study provides a proof of concept for the first time that unique palladium-gold (PdAu) and palladium-silver (PdAg) nanodendrites are bifunctional catalytic active sites for formate oxidation reactions (FORs) and formate dehydrogenation reactions (FDRs). The unique nanodendritic structure was developed a simple galvanic displacement reaction for the direct growth of PdAu and PdAg nanodendrites on a nickel foam (PdAu/NiNF and PdAg/NiNF). These PdAu/NiNF and PdAg/NiNF electrodes exhibited 2.32 and 1.59 times higher specific activity than that of the commercial Pd/C electrode and promising stability toward FORs. Moreover, the PdAu/NiNF and PdAg/NiNF nanodendrites were also highly active and selective catalysts for hydrogen generation from a formate solution with turnover frequency (TOF) values of 311 h and 287 h respectively. Impressively, a passive air-breathing formate fuel cell with PdAu/NiNF used as an anode can yield an open-circuit voltage of 1.12 V and a peak power density of 21.7 mW cm, which outperforms most others reported in the literature. PdAu and PdAg nanodendritic catalysts supported on a nickel foam demonstrate an open structure and uniform catalyst distribution and offer a promising nanoalloy for air-breathing formate fuel cells and on-site chemical hydrogen production systems.
这项研究首次提供了一个概念证明,即独特的钯金(PdAu)和钯银(PdAg)纳米枝晶是甲酸盐氧化反应(FORs)和甲酸盐脱氢反应(FDRs)的双功能催化活性位点。独特的纳米枝晶结构是通过简单的电置换反应在泡沫镍上直接生长 PdAu 和 PdAg 纳米枝晶而开发的(PdAu/NiNF 和 PdAg/NiNF)。与商业 Pd/C 电极相比,这些 PdAu/NiNF 和 PdAg/NiNF 电极表现出 2.32 倍和 1.59 倍的更高比活性,并且对 FORs 具有良好的稳定性。此外,PdAu/NiNF 和 PdAg/NiNF 纳米枝晶也是甲酸盐溶液析氢反应的高活性和选择性催化剂,其转化频率(TOF)值分别为 311 h 和 287 h。令人印象深刻的是,以 PdAu/NiNF 作为阳极的被动空气呼吸式甲酸盐燃料电池可产生 1.12 V 的开路电压和 21.7 mW cm 的峰值功率密度,优于文献中大多数报道的电池。负载在泡沫镍上的 PdAu 和 PdAg 纳米枝晶催化剂具有开放结构和均匀的催化剂分布,为空气呼吸式甲酸盐燃料电池和现场化学制氢系统提供了一种很有前途的纳米合金。