Solid-state reactions in binary molecular assemblies of F₁₆CuPc and pentacene.

Wakayama, Yutaka; de Oteyza, Dimas G; Garcia-Lastra, Juan M; Mowbray, Duncan J · ACS Nano · 2011

basic_science · Level V

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Abstract

Various phases of binary molecular assemblies of perfluorinated Cu-phthalocyanine (F₁₆CuPc) and pentacene were examined using scanning tunneling microscopy (STM). Alloying, solid solutions, phase separation, and segregation were observed in assemblies on monolayers according to the mixture ratios. The main driving force behind such molecular blending is CH-F hydrogen bonds. Lattice matching and molecular symmetry are other factors that determine the assembly configuration. A detailed understanding of such solid-state reactions provides a guideline to the construction of multilayered binary assemblies, where intermixing between molecules takes place when multiple layers are stacked.

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