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Motion of Fullerenes around Topological Defects on Metals: Implications for the Progress of Molecular Scale Devices

Accepted version
Peer-reviewed

Type

Article

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Authors

Nirmalraj, P 
Martin, N 
Thompson, D 

Abstract

Research on motion of molecules in the presence of thermal noise is central for progress in two-terminal molecular scale electronic devices. However, it is still unclear what influence imperfections in bottom metal electrode surface can have on molecular motion. Here, we report a two-layer crowding study, detailing the early stages of surface motion of fullerene molecules on Au(111) with nanoscale pores in a n-tetradecane chemical environment. The motion of the fullerenes is directed by crowding of the underlying n-tetradecane molecules around the pore fringes at the liquid–solid interface. We observe in real-space the growth of molecular populations around different pore geometries. Supported by atomic-scale modeling, our findings extend the established picture of molecular crowding by revealing that trapped solvent molecules serve as prime nucleation sites at nanopore fringes.

Description

Keywords

fullerenes, molecular dynamics, nanopores, scanning tunneling microscopy and spectroscopy

Journal Title

ACS Applied Materials & Interfaces

Conference Name

Journal ISSN

1944-8244
1944-8252

Volume Title

9

Publisher

American Chemical Society
Sponsorship
D.T. acknowledges Science Foundation Ireland (SFI) for financial support under Grant 15/CDA/3491 and for provision of computing resources at the SFI/Higher Education Authority Irish Centre for High-End Computing (ICHEC).