论文标题
近红外光催化金属中有效的热载体动力学
Efficient hot carrier dynamics in near-infrared photocatalytic metals
论文作者
论文摘要
光激发的金属可以生产高能的热载体,其受控的发电和提取是技术应用的有前途的途径。尽管已经广泛研究了Au-Group金属中的热载体动力学,但在中红外和近红外PT-GROUP金属范围内对光激发载体的动力学的微观描述仍然很少。由于这些材料被广泛用于催化中,并且最近在等离激元催化中,因此它们的微观载体动力学表征至关重要。我们采用\ emph {ab intib}多体扰动理论来研究散装PD和PT中的热载体生成,放松时间和平均自由路径。我们表明,该金属中光激发载体的直接光学转变主要在近红外范围内生成。我们还发现,PT的电子量子质量增强参数比PD高16 $ \%$,这有助于解释几个实验结果,显示出各种趋势。此外,我们预测PD(PT)热电子具有多达35 FS(24 FS)的总松弛时间,在费米能量高约0.5 eV(1.0 eV)。最后,当受到0.4至1.6 eV范围内的激发能时,可以在PD(110)和PD(100)的纳米膜中实现有效的热电子产生和提取。
Photoexcited metals can produce highly-energetic hot carriers whose controlled generation and extraction is a promising avenue for technological applications. While hot carrier dynamics in Au-group metals have been widely investigated, a microscopic description of the dynamics of photoexcited carriers in the mid-infrared and near-infrared Pt-group metals range is still scarce. Since these materials are widely used in catalysis and, more recently, in plasmonic catalysis, their microscopic carrier dynamics characterization is crucial. We employ \emph{ab initio} many-body perturbation theory to investigate the hot carrier generation, relaxation times, and mean free path in bulk Pd and Pt. We show that the direct optical transitions of photoexcited carriers in this metals are mainly generated in the near-infrared range. We also find that the electron-phonon mass enhancement parameter for Pt is 16 $\%$ higher than Pd, a result that help explains several experimental results showing diverse trends. Moreover, we predict that Pd (Pt) hot electrons possess total relaxation times of up to 35 fs (24 fs), taking place at approximately 0.5 eV (1.0 eV) above the Fermi energy. Finally, an efficient hot electron generation and extraction can be achieved in nanofilms of Pd (110) and Pd (100) when subject to excitation energies ranging from 0.4 to 1.6 eV.