Revealing the buried interface: para-sexiphenyl thin films grown on TiO2(110) (original) (raw)

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Substrate-Mediated Electronic Structure and Properties of Sexiphenyl Films

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Sexithiophene films on ordered and disordered TiO2(110) surfaces: Electronic, structural and morphological properties

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Structural relationship between epitaxially grown para-sexiphenyl and mica (0 0 1) substrates

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Highly ordered anisotropic nano-needles in para-sexiphenyl films

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Electronic and geometric structure of electro-optically active organic films and associated interfaces

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Nucleation and 3D growth of para -sexiphenyl nanostructures from an oriented 2D liquid layer investigated by photoemission electron microscopy

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Detlef M Smilgies

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Structure and morphology of sexiphenyl thin films grown on aluminium (1 1 1)

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Impact of alkyl side chains at self-assembly, electronic structure and charge arrangement in sexithiophene thin films

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Organic Electronics, 2011

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Revealing the Buried Metal-Organic Interface: Restructuring of the First Layer by van der Waals Forces

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Spectroscopic Evidence for a Substrate Dependent Orientation of Sexithiophene Thin Films Deposited onto Oriented PTFE

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In-situ study of the interface formation in organic multilayers

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Photoexcitations in oriented tetrahexyl-sexithiophene thin films

William Porzio

1999

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Formation of Self-Assembled Monolayers of π-Conjugated Molecules on TiO2 Surfaces by Thermal Grafting of Aryl and Benzyl Halides

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Organic Heteroepitaxy:p-Sexiphenyl on Uniaxially Oriented α-Sexithiophene

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Modification of Charge Transfer and Energy Level Alignment at Organic/TiO 2 Interfaces

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Controlling the electronic and physical coupling on dielectric thin films

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Electronic structure at InP organic polymer layer interfaces

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Optoelectronic devices based on para-sexiphenyl films grown by Hot Wall Epitaxy

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Precise Definition of a “Monolayer Point” in Polymer Brush Films for Fabricating Highly Coherent TiO2 Thin Films by Vapor-Phase Infiltration

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Epitaxial growth of sexiphenyl on Al(111): from monolayer to crystalline films

Jan Ivanco

Langmuir : the ACS journal of surfaces and colloids, 2004

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