Spurio Eleonora, Pelli Cresi Jacopo Stefano, Ammirati Giuseppe, Pelatti Samuele, Paladini Alessandra, D'Addato Sergio, Turchini Stefano, O'Keeffe Patrick, Catone Daniele, Luches Paola
Dipartimento FIM, Università degli Studi di Modena e Reggio Emilia, Via G. Campi 213/a, 41125 Modena, Italy.
Istituto Nanoscienze, CNR (NANO-CNR), Via G. Campi 213/a, 41125 Modena, Italy.
ACS Photonics. 2023 May 3;10(5):1566-1574. doi: 10.1021/acsphotonics.3c00184. eCollection 2023 May 17.
The electron injection efficiency and the steady state absorptance at different photon energies for a composite system made of Au NPs embedded in a cerium oxide matrix are reported. Cerium oxide can be coupled with plasmonic nanoparticles (NPs) to improve its catalytic properties by visible-light absorption. The present work is a study of the ultrafast dynamics of excited states induced by ultraviolet and visible-light excitation in Au NPs combined with cerium oxide, aimed at understanding the excitation pathways. The data, obtained by femtosecond transient absorption spectroscopy, show that the excitation of localized surface plasmon resonances (LSPRs) in the Au NPs leads to an ultrafast injection of electrons into the empty 4f states of the surrounding cerium oxide. Within the first few picoseconds, the injected electrons couple with the lattice distortion forming a polaronic excited state, with similar properties to that formed after direct band gap excitation of the oxide. At sub-picosecond delay times, we observed relevant differences in the energetics and the time dynamics as compared to the case of band gap excitation of the oxide. Using different pump energies across the LSPR-related absorption band, the efficiency of the electron injection from the NPs into the oxide was found to be rather high, with a maximum above 30%. The injection efficiency has a different trend in energy as compared to the LSPR-related static optical absorptance, showing a significant decrease in low energies. This behavior is explained considering different deexcitation pathways with variable weight across the LSPR band. The results are important for the design of materials with high overall solar catalytic efficiency.
报道了嵌入氧化铈基质中的金纳米颗粒(Au NPs)复合系统在不同光子能量下的电子注入效率和稳态吸收率。氧化铈可与等离子体纳米颗粒(NPs)耦合,通过可见光吸收提高其催化性能。本工作研究了金纳米颗粒与氧化铈结合时,紫外光和可见光激发诱导的激发态超快动力学,旨在了解激发途径。通过飞秒瞬态吸收光谱获得的数据表明,金纳米颗粒中局域表面等离子体共振(LSPRs)的激发导致电子超快注入到周围氧化铈的空4f态中。在最初的几皮秒内,注入的电子与晶格畸变耦合形成极化子激发态,其性质与氧化物直接带隙激发后形成的激发态相似。在亚皮秒延迟时间,我们观察到与氧化物带隙激发情况相比,在能量和时间动力学方面存在相关差异。在与LSPR相关的吸收带中使用不同的泵浦能量,发现电子从纳米颗粒注入到氧化物中的效率相当高,最大值超过30%。与LSPR相关的静态光学吸收率相比,注入效率在能量上有不同的趋势,在低能量时显著降低。考虑到在LSPR波段具有可变权重的不同去激发途径,解释了这种行为。这些结果对于设计具有高整体太阳能催化效率的材料很重要。