Frias Batista Laysa M, Moody Michael, Weththasingha Chamari, Kaplan Ella, Faruque Irtiza, El-Shall M Samy, Tibbetts Katharine Moore
Department of Chemistry, Virginia Commonwealth University, Richmond, VA 23284, USA.
Phys Chem Chem Phys. 2023 Jul 19;25(28):18844-18853. doi: 10.1039/d3cp00052d.
Laser-induced reduction of metal ions is attracting increasing attention as a sustainable route to ligand-free metal nanoparticles. In this work, we investigate the photochemical reactions involved in reduction of Ag and [AuCl] upon interaction with lasers with nanosecond and femtosecond pulse duration, using strong-field ionization mass spectrometry and spectroscopic assays to identify stable molecular byproducts. Whereas Ag in aqueous isopropyl alcohol (IPA) is reduced through plasma-mediated mechanisms upon femtosecond laser excitation, low-fluence nanosecond laser excitation induces electron transfer from IPA to Ag. Both nanosecond and femtosecond laser excitation of aqueous [AuCl] produce reactive chlorine species by Au-Cl bond homolysis. Formation of numerous volatile products by IPA decomposition during both femtosecond and nanosecond laser excitation of [AuCl] is attributed to enhanced optical breakdown by the Au nanoparticle products of [AuCl] reduction. These mechanistic insights can inform the design of laser synthesis procedures to improve control over metal nanoparticle properties and enhance byproduct yields.
激光诱导金属离子还原作为一种制备无配体金属纳米颗粒的可持续途径,正受到越来越多的关注。在这项工作中,我们利用强场电离质谱和光谱分析来识别稳定的分子副产物,研究了在与纳秒和飞秒脉冲持续时间的激光相互作用时,银和[AuCl]还原过程中涉及的光化学反应。在飞秒激光激发下,水相中异丙醇(IPA)中的银通过等离子体介导的机制被还原,而低通量纳秒激光激发则诱导电子从IPA转移到银。水相[AuCl]的纳秒和飞秒激光激发均通过Au-Cl键的均裂产生活性氯物种。在[AuCl]的飞秒和纳秒激光激发过程中,IPA分解形成大量挥发性产物,这归因于[AuCl]还原产生的金纳米颗粒产物增强了光学击穿。这些机理见解可为激光合成程序的设计提供参考,以改善对金属纳米颗粒性质的控制并提高副产物产率。