We used partially fluorinated alkyl and aromatic phosphonates as model systems with similar molecular dipole moments to form self-assembled monolayers (SAMs) on the Zn-terminated ZnO(0001) surface. The introduced surface dipole moment allows tailoring the ZnO work function to tune the energy levels at the inorganic–organic interface to organic semiconductors, which should improve the efficiency of charge injection/extraction or exciton dissociation in hybrid electronic devices. By employing a wide range of surface characterization techniques supported by theoretical calculations, we present a detailed picture of the phosphonates’ binding to ZnO, the molecular orientation in the SAM, their packing density, as well as the concomitant work fun...
Two strategies have been explored for organic functionalizations of ZnO nanotetrapods via anchoring ...
Metal oxides are versatile substrates for the design of a wide range of SAM-based organic-inorganic ...
Transparent conductive oxides such as indium tin oxide (ITO) are common substrates for optoelectroni...
We used partially fluorinated alkyl and aromatic phosphonates as model systems with similar molecul...
We used partially fluorinated alkyl and aromatic phosphonates as model systems with similar molecula...
ABSTRACT: We used aromatic phosphonates with substituted phenyl rings with different molecular dipol...
We used aromatic phosphonates with substituted phenyl rings with different molecular dipole moments ...
Metal oxides are versatile substrates for the design of a wide range of SAM-based organic–inorganic ...
Zinc oxide (ZnO) nanoparticles have emerged as a fascinating metal oxide semiconductor nanomaterial ...
© 2016 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.Zinc oxide (ZnO) is a widely utilized, versatile m...
The structural and electronic properties of a tetrathiafulvalene (TTF) monolayer adsorbed onto the Z...
We present a study of the functionalization of a monocrystalline ZnO surface using aromatic dithiols...
Self-assembled monolayers (SAMs) of dipolar phosphonic acids can tailor the interface between organi...
We present a study of the functionalization of a monocrystalline ZnO surface using aromatic dithiols...
The self‐assembly of electroactive organic molecules on transparent conductive oxides is a versatile...
Two strategies have been explored for organic functionalizations of ZnO nanotetrapods via anchoring ...
Metal oxides are versatile substrates for the design of a wide range of SAM-based organic-inorganic ...
Transparent conductive oxides such as indium tin oxide (ITO) are common substrates for optoelectroni...
We used partially fluorinated alkyl and aromatic phosphonates as model systems with similar molecul...
We used partially fluorinated alkyl and aromatic phosphonates as model systems with similar molecula...
ABSTRACT: We used aromatic phosphonates with substituted phenyl rings with different molecular dipol...
We used aromatic phosphonates with substituted phenyl rings with different molecular dipole moments ...
Metal oxides are versatile substrates for the design of a wide range of SAM-based organic–inorganic ...
Zinc oxide (ZnO) nanoparticles have emerged as a fascinating metal oxide semiconductor nanomaterial ...
© 2016 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim.Zinc oxide (ZnO) is a widely utilized, versatile m...
The structural and electronic properties of a tetrathiafulvalene (TTF) monolayer adsorbed onto the Z...
We present a study of the functionalization of a monocrystalline ZnO surface using aromatic dithiols...
Self-assembled monolayers (SAMs) of dipolar phosphonic acids can tailor the interface between organi...
We present a study of the functionalization of a monocrystalline ZnO surface using aromatic dithiols...
The self‐assembly of electroactive organic molecules on transparent conductive oxides is a versatile...
Two strategies have been explored for organic functionalizations of ZnO nanotetrapods via anchoring ...
Metal oxides are versatile substrates for the design of a wide range of SAM-based organic-inorganic ...
Transparent conductive oxides such as indium tin oxide (ITO) are common substrates for optoelectroni...