ICGM, Univ Montpellier, CNRS, ENSCM, Montpellier 34095, France.
IBMM, Univ Montpellier, CNRS, ENSCM, Montpellier 34095, France.
J Am Chem Soc. 2020 Dec 16;142(50):21068-21081. doi: 10.1021/jacs.0c09383. Epub 2020 Dec 2.
Fatty acids are ubiquitous in biological systems and widely used in materials science, including for the formulation of drugs and the surface-functionalization of nanoparticles. However, important questions regarding the structure and reactivity of these molecules are still to be elucidated, including their mode of binding to certain metal cations or materials surfaces. In this context, we have developed novel, efficient, user-friendly, and cost-effective synthetic protocols based on ball-milling, for the O and O isotopic labeling of two key fatty acids which are widely used in (nano)materials science, namely stearic and oleic acid. Labeled molecules were analyzed by H and C solution NMR, IR spectroscopy, and mass spectrometry (ESI-TOF and LC-MS), as well as O solid state NMR (for the O labeled species). In both cases, the labeling procedures were scaled-up to produce up to gram quantities of O- or O-enriched molecules in just half-a-day, with very good synthetic yields (all ≥84%) and enrichment levels (up to an average of 46% per carboxylic oxygen). The O-labeled oleic acid was then used for the synthesis of a metal soap (Zn-oleate) and the surface-functionalization of ZnO nanoparticles (NPs), which were characterized for the first time by high-resolution O NMR (at 14.1 and 35.2 T). This allowed very detailed insight into (i) the coordination mode of the oleate ligand in Zn-oleate to be achieved (including information on Zn···O distances) and (ii) the mode of attachment of oleic-acid at the surface of ZnO (including novel information on its photoreactivity upon UV-irradiation). Overall, this work demonstrates the high interest of these fatty acid-enrichment protocols for understanding the structure and reactivity of a variety of functional (nano)materials systems using high resolution analyses like O NMR.
脂肪酸在生物系统中无处不在,在材料科学中也得到了广泛应用,包括药物的配方和纳米粒子的表面功能化。然而,关于这些分子的结构和反应性仍有一些重要的问题需要阐明,包括它们与某些金属阳离子或材料表面的结合方式。在这种情况下,我们开发了基于球磨的新颖、高效、用户友好且具有成本效益的合成方案,用于对两种在(纳米)材料科学中广泛使用的关键脂肪酸进行 O 和 O 同位素标记,即硬脂酸和油酸。通过 H 和 C 溶液 NMR、IR 光谱和质谱(ESI-TOF 和 LC-MS)以及 O 固体 NMR(用于 O 标记的物种)对标记的分子进行了分析。在这两种情况下,标记程序都进行了放大,以便在短短半天内生产出高达克数的 O 或 O 富集分子,产率非常高(均≥84%),富集水平高达每个羧基氧平均 46%(O 标记的油酸)。然后,用 O 标记的油酸合成了一种金属皂(Zn-油酸)和 ZnO 纳米粒子(NPs)的表面功能化,并用高分辨率 O NMR(在 14.1 和 35.2 T)首次对其进行了表征。这使得我们能够非常详细地了解(i)Zn-油酸中油酸配体的配位模式(包括 Zn···O 距离的信息)和(ii)油酸在 ZnO 表面的附着方式(包括其在 UV 照射下的光反应的新信息)。总的来说,这项工作证明了这些脂肪酸富集方案在使用 O NMR 等高分辨率分析方法来理解各种功能(纳米)材料系统的结构和反应性方面具有很高的应用价值。