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绝缘衬底支撑的单层石墨烯对酞菁铅分子取向的模板效应。

Templating effect of single-layer graphene supported by an insulating substrate on the molecular orientation of lead phthalocyanine.

作者信息

Madhuri K Priya, Sagade Abhay A, Santra Pralay K, John Neena S

机构信息

Centre for Nano and Soft Matter Sciences, Jalahalli, Bengaluru 560 013, India.

Laboratory for Advanced Nanoelectronic Devices, Sir C. V. Raman Research Park, Department of Physics & Nanotechnology, SRM Institute of Science and Technology, Kattankulathur 603 203, Tamil Nadu, India.

出版信息

Beilstein J Nanotechnol. 2020 May 19;11:814-820. doi: 10.3762/bjnano.11.66. eCollection 2020.

Abstract

The influence of single-layer graphene on top of a SiO/Si surface on the orientation of nonplanar lead phthalocyanine (PbPc) molecules is studied using two-dimensional grazing incidence X-ray diffraction. The studies indicate the formation of a mixture of polymorphs, i.e., monoclinic and triclinic forms of PbPc with face-on (lying down) and edge-on (standing up) PbPc orientations, respectively. The formation of monoclinic fractions is attributed to the presence of the graphene layer directing the π interactions between the highly delocalized macrocycles. The competing interfacial van der Waals forces and molecule-molecule interactions lead to the formation of a small fraction of triclinic moieties. The nanoscale electrical characterization of the thin PbPc layer on graphene by means of conducting atomic force microscopy shows enhanced vertical conductance with interconnected conducting domains consisting of ordered monoclinic crystallites through which the charge transfer occurs via tunneling. These results show the importance of a templating layer to induce the formation of a required phase of PbPc suitable for specific device applications.

摘要

利用二维掠入射X射线衍射研究了SiO/Si表面上单层石墨烯对非平面酞菁铅(PbPc)分子取向的影响。研究表明形成了多晶型物的混合物,即分别具有面朝上(平躺)和边缘朝上(直立)的PbPc取向的单斜晶系和三斜晶系形式的PbPc。单斜晶系部分的形成归因于石墨烯层的存在,该层引导高度离域的大环之间的π相互作用。相互竞争的界面范德华力和分子间相互作用导致形成一小部分三斜晶系部分。通过导电原子力显微镜对石墨烯上的薄PbPc层进行纳米级电学表征,结果表明垂直电导率增强,且具有由有序单斜微晶组成的相互连接的导电域,电荷通过隧道效应在其中转移。这些结果表明了模板层对于诱导形成适用于特定器件应用的所需PbPc相的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5500/7277535/237079ec05f6/Beilstein_J_Nanotechnol-11-814-g002.jpg

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