Department of Ecosystem Engineering, The University of Tokushima, Tokushima 770-8506, Japan.
Langmuir. 2010 Jun 15;26(12):9956-63. doi: 10.1021/la100015t.
An in situ spectroscopic study of the nanosecond laser-induced melting and size reduction of pseudospherical gold nanoparticles with 54 +/- 7 nm diameter allowed the observation of a heating efficiency that was very dependent on the excitation wavelength. A remarkably greater efficiency was observed for the photothermal effect of interband excitation than that of intraband excitation. This noteworthy observation is ascribed to an altered electron heat capacity, c(e), during photoexcitation depending on the excitation energy, which is a phenomenon that has not been realized previously. As a result, a 60% reduction of the specific heat capacity, c(p), compared to that of bulk gold was obtained for interband excitation at 266 nm whereas the c(p) value for the excitation of the intraband transition at 532 nm was unaltered. A semiquantitative explanation was given for this striking phenomenon induced by interband excitation in which excitation-relaxation cycles of electrons upon excitation of 5d electrons to the 6sp band lead to a reduced number of electrons contributing to the electron temperature rise in the vicinity of the Fermi level during the nanosecond laser pulse duration. By contrast, electronic excitation within the 6sp band results in no net reduction in the number of electrons near the Fermi level, giving rise to a value of c(p) similar to that of bulk gold. Our finding that the heat capacity of gold nanoparticles can be changed upon UV laser excitation is important for understanding the fundamental nature of noble metal nanoparticles. Furthermore, this finding might be useful for preparing new metal alloy particles as well as for manipulating the thermodynamic properties of the nanoparticles.
采用纳秒激光对直径为 54±7nm 的类球形金纳米粒子进行诱导熔化和尺寸减小的原位光谱研究,观察到加热效率非常依赖于激发波长。我们发现,带间激发的光热效应比带内激发的效率高得多。这种显著的观察结果归因于光激发过程中电子热容 c(e)随激发能量而改变,这是以前未被意识到的现象。结果,在 266nm 处进行带间激发时,与体金相比,比热 c(p)降低了 60%,而在 532nm 处进行带内跃迁激发时,c(p)值保持不变。我们对半定量地解释了这种由带间激发引起的显著现象,即在激发 5d 电子到 6sp 带时,电子的激发-弛豫循环导致在纳秒激光脉冲持续时间内,费米能级附近的电子温度升高时,参与的电子数量减少。相比之下,在 6sp 带内的电子激发不会导致费米能级附近的电子数量净减少,因此 c(p)值与体金相似。我们发现金纳米粒子的热容可以通过紫外激光激发来改变,这对于理解贵金属纳米粒子的基本性质非常重要。此外,这一发现可能有助于制备新的金属合金颗粒,并用于操纵纳米颗粒的热力学性质。