Nucleation and growth of thin films of rod-like conjugated molecules. Hlawacek, G. & Teichert, C. Journal of Physics: Condensed Matter, 25(14):143202, 4, 2013.
Paper
Website abstract bibtex Thin films formed from small molecules are rapidly gaining importance in different technological fields. To explain their growth, methods developed for zero-dimensional atoms as the film-forming particles are applied. However, in organic thin-film growth the dimensionality of the building blocks comes into play. Using the special case of the model molecule para-Sexiphenyl, we will emphasize the challenges that arise from the anisotropic and one-dimensional nature of building blocks. Differences or common features with other rod-like molecules will be discussed. The typical morphologies encountered for this group of molecules and the relevant growth modes will be investigated. Special attention is given to the transition between a flat-lying and upright orientation of the building blocks during nucleation. We will further discuss methods to control the molecular orientation and describe the involved diffusion processes qualitatively and quantitatively.
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title = {Nucleation and growth of thin films of rod-like conjugated molecules},
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year = {2013},
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tags = {afm,critical_nucleus,diffusion,graphene,iridium,mica,nucleation,oxide,para-quaterphenyl,para-sexiphenyl,pentacene,sexithiophen,silicon,step-edge-barrier,titanium},
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notes = {with cover image},
abstract = {Thin films formed from small molecules are rapidly gaining importance in different technological fields. To explain their growth, methods developed for zero-dimensional atoms as the film-forming particles are applied. However, in organic thin-film growth the dimensionality of the building blocks comes into play. Using the special case of the model molecule para-Sexiphenyl, we will emphasize the challenges that arise from the anisotropic and one-dimensional nature of building blocks. Differences or common features with other rod-like molecules will be discussed. The typical morphologies encountered for this group of molecules and the relevant growth modes will be investigated. Special attention is given to the transition between a flat-lying and upright orientation of the building blocks during nucleation. We will further discuss methods to control the molecular orientation and describe the involved diffusion processes qualitatively and quantitatively.},
bibtype = {article},
author = {Hlawacek, Gregor and Teichert, Christian},
journal = {Journal of Physics: Condensed Matter},
number = {14}
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