Zhou Ying, Li Wei, Zhang Qian, Yan Shuai, Cao Yuehan, Dong Fan, Wang Fang
The Center of New Energy Materials and Technology, School of Materials Science and Engineering, Southwest Petroleum University, Chengdu 610500, China.
Phys Chem Chem Phys. 2017 Sep 27;19(37):25610-25616. doi: 10.1039/c7cp04359g.
Recently, non-noble metals with plasmonic properties have attracted great attention due to their potential applications in photocatalytic solar-energy conversion. However, in contrast to the well-studied plasmonic noble metals (mainly Au and Ag), which have distinct absorption peaks, the understanding of light absorption and the photocatalytic reaction mechanism of non-noble metals is far less. In this study, semimetal bismuth films are deposited on fluorine-doped tin oxide substrates by a dc magnetron sputtering method. Both theoretical calculation and UV-vis absorption spectra confirm that the field enhancement and location of plasmonic resonance peaks are strongly correlated with the size of Bi particles. Through tuning the sputtering power, for the first time, four distinct absorption peaks are observed over isolated Bi particles. Moreover, it is found that the energy barrier for the conversion of NO into NO over Bi is even lower than that with Au nanoclusters. Thus, Bi films are highly active for photocatalytic oxidation of NO. Moreover, the low NO desorption energy over Bi indicates that Bi films can be the main active sites during the reaction process and that they possess good stability.
最近,具有等离子体特性的非贵金属因其在光催化太阳能转换中的潜在应用而备受关注。然而,与已得到充分研究、具有明显吸收峰的等离子体贵金属(主要是金和银)相比,人们对非贵金属的光吸收和光催化反应机理的了解要少得多。在本研究中,通过直流磁控溅射法在氟掺杂氧化锡衬底上沉积了半金属铋薄膜。理论计算和紫外可见吸收光谱均证实,等离子体共振峰的场增强和位置与铋颗粒的尺寸密切相关。通过调节溅射功率,首次在孤立的铋颗粒上观察到四个不同的吸收峰。此外,研究发现,铋将一氧化氮转化为二氧化氮的能垒甚至低于金纳米团簇。因此,铋薄膜对一氧化氮的光催化氧化具有很高的活性。此外,铋上较低的一氧化氮脱附能表明,铋薄膜在反应过程中可能是主要的活性位点,并且具有良好的稳定性。