Rizzuto Anthony M, Irgen-Gioro Shawn, Eftekhari-Bafrooei Ali, Saykally Richard J
Department of Chemistry, University of California , Berkeley, California 94720, United States.
Chemical Sciences Division, Lawrence Berkeley National Laboratory , Berkeley, California 94720, United States.
J Phys Chem Lett. 2016 Oct 6;7(19):3882-3885. doi: 10.1021/acs.jpclett.6b01931. Epub 2016 Sep 20.
The behavior of ions at aqueous interfaces influences vital processes in many fields but has long remained a subject of controversy. Over the past decade, counterintuitive surface concentration enhancement of several ions in aqueous solution has been demonstrated via nonlinear laser spectroscopy and mass spectrometry. While the evidence for significant ion enhancement at the air-water interface is convincing, the mechanism remains incompletely understood. Toward this end, we present the full broadband DUV-SFG spectrum of the charge-transfer-to-solvent (CTTS) band of interfacial aqueous iodide measured in a single laser shot with a newly developed broadband deep UV-SFG technique, clearly revealing a ∼8 nm redshift and a significant linewidth narrowing relative to bulk solution spectra. KI and NaI solutions yield indistinguishable results. Additionally, we observe a dramatic change in the relative intensities of the J = 3/2 and 1/2 CTTS transitions.
离子在水界面的行为影响着许多领域的重要过程,但长期以来一直存在争议。在过去十年中,通过非线性激光光谱和质谱法已证明水溶液中几种离子存在违反直觉的表面浓度增强现象。虽然气-水界面处离子显著增强的证据令人信服,但其机制仍未完全理解。为此,我们利用新开发的宽带深紫外和频光谱技术,在单次激光照射下测量了界面水合碘化物的电荷转移至溶剂(CTTS)带的全宽带深紫外和频光谱,清楚地揭示了相对于本体溶液光谱约8纳米的红移和显著的线宽变窄。碘化钾和碘化钠溶液产生了难以区分的结果。此外,我们观察到J = 3/2和1/2 CTTS跃迁相对强度的显著变化。