IBM Research-Zurich , 8803 Rüschlikon , Switzerland.
Department of Chemical Engineering , Louisiana State University , Baton Rouge , Louisiana 70803 , United States.
J Am Chem Soc. 2018 Jul 5;140(26):8156-8161. doi: 10.1021/jacs.8b02525. Epub 2018 Jun 25.
Here we present a new method that integrates atomic force microscopy (AFM) with analytical tools such as high-performance liquid chromatography (HPLC) with diode-array ultraviolet-visible (UV) absorbance, and mass spectrometry (MS) along with synthetic chemistry. This allows the detection, identification, and quantification of novel polycyclic aromatic hydrocarbons (PAH) in complex molecular mixtures. This multidisciplinary methodology is employed to characterize the supercritical pyrolysis products of n-decane, a model fuel. The pyrolysis experiments result in a complex mixture of both unsubstituted as well as highly methylated PAH. We demonstrate the AFM-driven discovery of a novel compound, benz[ l]indeno[1,2,3- cd]pyrene, with the chemical structure assignment serving as input for the chemical synthesis of such molecule. The synthesis is verified by AFM, and the synthesized compound is used as a reference standard in analytical measurements, establishing the first-ever unequivocal identification and quantification of this PAH as a fuel product. Moreover, the high-resolution AFM analysis detected several five- to eight-ring PAH, which represents novel fuel pyrolysis and/or combustion products. This work provides a route to develop new analytical standards by symbiotically using AFM, chemical synthesis, and modern analytical tools.
我们在这里提出了一种新方法,将原子力显微镜(AFM)与分析工具(如高效液相色谱(HPLC)与二极管阵列紫外-可见(UV)吸收和质谱(MS))以及合成化学相结合。这使得对复杂分子混合物中的新型多环芳烃(PAH)进行检测、鉴定和定量成为可能。这种多学科方法用于表征正构烷烃(一种模型燃料)的超临界热解产物。热解实验产生了未取代和高度甲基化的 PAH 的复杂混合物。我们展示了利用 AFM 驱动发现一种新型化合物苯并[l]茚并[1,2,3-cd]芘,其化学结构分配作为该分子化学合成的输入。通过 AFM 验证了合成,并且合成的化合物被用作分析测量的参考标准,从而首次明确地鉴定和定量了这种作为燃料产物的 PAH。此外,高分辨率 AFM 分析检测到了几种五到八环的 PAH,这代表了新型燃料热解和/或燃烧产物。这项工作为通过共生使用 AFM、化学合成和现代分析工具开发新的分析标准提供了一种途径。