Department of Chemistry, Clemson University , Clemson, South Carolina 29634, United States.
Anal Chem. 2016 Jun 7;88(11):5579-84. doi: 10.1021/acs.analchem.6b00751. Epub 2016 May 13.
The concept of ambient desorption-optical emission spectroscopy (AD-OES) is demonstrated using a liquid sampling-atmospheric pressure glow discharge (LS-APGD) microplasma as the desorption/excitation source. The LS-APGD has previously been employed for elemental analysis of solution samples and particulates introduced via laser ablation in both the optical emission and mass spectrometries (OES, MS) modes. In addition, the device has been shown to be effective for the analysis of elemental and molecular species operating in an ambient desorption/ionization mass spectrometry (ADI-MS) mode. Proof-of-concept is presented here in the use of the LS-APGD to volatilize three very diverse sample forms (metallic thin films, dry solution residues, and bulk materials), with the liberated material excited within the microplasma and detected via OES, i.e., AD-OES. While the demonstration is principally qualitative at this point, it is believed that the basic approach may find application across a broad spectrum of analytical challenges requiring elemental analysis, including metals, soils, and volume-limited solutions, analogous to what has been seen in the development of the field of ADI-MS for molecular species determinations.
利用液体取样-常压辉光放电(LS-APGD)微等离子体作为解吸/激发源,展示了环境解吸-光学发射光谱(AD-OES)的概念。LS-APGD 先前已被用于溶液样品和通过激光烧蚀引入的颗粒的元素分析,分别采用发射光谱(OES)和质谱(MS)模式。此外,该装置还被证明在环境解吸/离子化质谱(ADI-MS)模式下分析元素和分子物种是有效的。这里提出了使用 LS-APGD 蒸发三种非常不同的样品形式(金属薄膜、干燥溶液残留物和块状材料)的概念验证,通过 OES 即 AD-OES 检测到解吸材料在微等离子体中的激发。虽然目前的演示主要是定性的,但相信这种基本方法可能会在需要元素分析的广泛分析挑战中找到应用,包括金属、土壤和体积有限的溶液,类似于在发展 ADI-MS 领域中用于分子物种测定的情况。