Selective deposition of organic molecules onto DPPC templates-a molecular dynamics study

Hirtz M, Kumar N, Franke JH, Hao J, Lu N, Fuchs H, Chi LF

Research article (journal) | Peer reviewed

Abstract

The site-selective deposition of organic molecules onto template structures to create ordered micro/nanoscale arrangements has drawn more and more attention because of the broad possibility, for example, application in organic electronic devices. Here we present a molecular dynamics study toward the selective deposition of organic molecules 3(5)-(9-anthryl) pyrazole (ANP), perylene and sexiphenyl (6P) onto template structures made of the phospholipid L-α-dipalmitoyl-phosphatidylcholine (DPPC) in alternating liquid expanded (LE) and liquid condensed (LC) states. The simulation results indicate, first of all, that the molecules immerge into both LE and LC phases instead of staying on top of them. Furthermore, the simulations replicate the empirically observed higher diffusion constants of the organic molecules on LE phase compared to LC phase of the underlying DPPC layer. Additionally, we propose a possible mechanism for the diffusion barrier between LE/LC phase needed to explain the experimental findings of the selective deposition. Altogether, this study supports the notions suggested by the experiments on the causes of the selective deposition while giving a deeper insight into the molecular processes involved.

Details about the publication

JournalJournal of Colloid and Interface Science
Volume389
Issue1
Page range206-212
StatusPublished
Release year2013
Language in which the publication is writtenEnglish
DOI10.1016/j.jcis.2012.09.024
KeywordsMolecular dynamics simulation; ANP; Perylene; Templating

Authors from the University of Münster

Chi, Lifeng
Interface Physics Group (Prof. Fuchs)
Franke, Jörn-Holger
Institute of Physics (PI)
Fuchs, Harald
Interface Physics Group (Prof. Fuchs)
Hirtz, Michael
Institute of Physics (PI)