Suppr超能文献

普鲁士蓝和钌紫纳米颗粒的振动弛豫和光物理的瞬态吸收研究。

Transient absorption studies of vibrational relaxation and photophysics of Prussian blue and ruthenium purple nanoparticles.

机构信息

Chemistry Division, Naval Research Laboratory, Washington, DC 20375, USA.

出版信息

J Chem Phys. 2011 Mar 28;134(12):124510. doi: 10.1063/1.3564918.

Abstract

Transient infrared and visible absorption studies have been used to characterize vibrational and electronic dynamics of Prussian blue (PB) and ruthenium purple (RP) nanoparticles produced and characterized in AOT reverse micelles. Studies include excitation and probing with both infrared (near 2000 cm(-1)) and visible (800 nm) pulses. From IR pump-IR probe measurements of the CN stretching bands, vibrational population lifetimes are determined to be 32 ± 4 ps for PB and 44 ± 14 ps for RP. These times are longer than those for ferrocyanide (4 ps) and ruthenocyanide (4 ps) in normal water and are closer to the times for these species in heavy water (25-30 ps) and for ferrocyanide in formamide (43 ps). The PB and RP lifetimes are also longer than those (<15 ps) previously measured for CN stretching bands following intervalence excitation and back-electron transfer (BET) for dinuclear mixed-valence compounds containing Fe, Ru, and Os in heavy water and formamide [A. V. Tivansky, C. F. Wang, and G. C. Walker, J. Phys. Chem. A 107, 9051 (2003)]. In 800 nm pump-IR probe experiments on RP and PB, transient IR spectra and decay curves are similar to those with IR excitation; a ground state bleach and a red shifted (by ~40 cm(-1)) excited state decay are observed. These results for the visible pumping are consistent with rapid (<1 ps) BET resulting in population in the ground electronic state with vibrational excitation in the CN mode. In addition, transient absorption studies were performed for PB and RP probing with visible light using both visible and IR excitation. The early time response for the 800 nm pump-800 nm probe of PB exhibits an instrument-limited, subpicosecond bleach followed by an absorption, which is consistent with the previously reported results [D. C. Arnett, P. Vohringer, and N. F. Scherer, J. Am. Chem. Soc. 117, 12262 (1995)]. The absorption exhibits a biexponential decay with decay times of 9 and 185 ps, which could have been attributed to the CN band excitation indicated from 800 pump-IR probe results. However, IR pump-800 nm probe studies reveal that excitation of the CN band directly results in a decreased visible absorption that decays in 18 ps rather than an induced absorption at 800 nm. Characteristics of the IR pump-800 nm probe, especially that it induces a bleach instead of an absorption, unambiguously indicate that the transient absorption from the 800 nm pump-800 nm probe is dominated by states other than the CN bands and is attributed to population in other, probably lower frequency, vibrational modes excited following visible excitation and rapid BET.

摘要

瞬态红外和可见吸收研究已被用于表征普鲁士蓝(PB)和钌紫(RP)纳米粒子的振动和电子动力学,这些纳米粒子是在 AOT 反胶束中产生和表征的。研究包括使用近红外(约 2000 cm^(-1)) 和可见(800nm)脉冲进行激发和探测。从 CN 伸缩带的红外泵浦-红外探测测量中,确定 PB 的振动种群寿命为 32 ± 4 ps,RP 的振动种群寿命为 44 ± 14 ps。这些时间比正常水中的亚铁氰化物(4 ps)和钌氰化物(4 ps)长,更接近重水中这些物种的时间(25-30 ps)和甲酰胺中的亚铁氰化物(43 ps)。PB 和 RP 的寿命也比那些在重水和甲酰胺中含 Fe、Ru 和 Os 的双核混合价化合物中,通过间隔激发和反向电子转移(BET)后测量的 CN 伸缩带的寿命长(<15 ps)[A. V. Tivansky、C. F. Wang 和 G. C. Walker,J. Phys. Chem. A 107,9051(2003)]。在 RP 和 PB 的 800nm 泵浦-IR 探测实验中,瞬态红外光谱和衰减曲线与使用 IR 激发的实验相似;观察到基态漂白和红移(约 40 cm^(-1))激发态衰减。这些可见泵浦的结果与快速(<1 ps)BET 一致,导致 CN 模式振动激发的基态电子态中的种群。此外,还使用可见和 IR 激发对 PB 和 RP 进行了可见光探测的瞬态吸收研究。PB 的 800nm 泵浦-800nm 探测的早期响应表现出仪器限制的亚皮秒漂白,随后是吸收,这与之前报道的结果一致[D. C. Arnett、P. Vohringer 和 N. F. Scherer,J. Am. Chem. Soc. 117,12262(1995)]。吸收表现出双指数衰减,衰减时间为 9 和 185 ps,这可能归因于从 800nm 泵浦-IR 探测结果指示的 CN 带激发。然而,IR 泵浦-800nm 探测研究表明,CN 带的激发直接导致可见吸收减少,在 18 ps 内衰减,而不是在 800nm 处诱导吸收。800nm 泵浦-800nm 探测的特征,特别是它诱导漂白而不是吸收,明确表明,800nm 泵浦-800nm 探测的瞬态吸收主要由 CN 带以外的状态主导,并归因于可见激发和快速 BET 后其他可能处于较低频率的振动模式中的种群。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验