Schuler Bruno, Zhang Yunlong, Collazos Sara, Fatayer Shadi, Meyer Gerhard, Pérez Dolores, Guitián Enrique, Harper Michael R, Kushnerick J Douglas, Peña Diego, Gross Leo
IBM Research - Zurich , Säumerstrasse 4 , 8803 Rüschlikon , Switzerland . Email:
ExxonMobil Research and Engineering Company , Annandale , NJ 08801 , USA . Email:
Chem Sci. 2017 Mar 1;8(3):2315-2320. doi: 10.1039/c6sc04698c. Epub 2016 Dec 12.
We designed and studied hydrocarbon model compounds by high-resolution noncontact atomic force microscopy. In addition to planar polycyclic aromatic moieties, these novel model compounds feature linear alkyl and cycloaliphatic motifs that exist in most hydrocarbon resources - particularly in petroleum asphaltenes and other petroleum fractions - or in lipids in biological samples. We demonstrate successful intact deposition by sublimation of the alkyl-aromatics, and differentiate aliphatic moieties from their aromatic counterparts which were generated from the former by atomic manipulation. The characterization by AFM in combination with atomic manipulation provides clear fingerprints of the aromatic and aliphatic moieties that will facilitate their assignment in unknown samples.
我们通过高分辨率非接触原子力显微镜设计并研究了烃类模型化合物。除了平面多环芳烃部分外,这些新型模型化合物还具有线性烷基和脂环族结构单元,它们存在于大多数烃类资源中——特别是在石油沥青质和其他石油馏分中——或生物样品的脂质中。我们展示了通过烷基芳烃升华实现的成功完整沉积,并通过原子操纵将脂肪族部分与其由前者生成的芳香族对应物区分开来。原子力显微镜结合原子操纵进行的表征提供了芳香族和脂肪族部分的清晰指纹,这将有助于在未知样品中对它们进行识别。