We present a multitechnique investigation of the structural and electronic properties of the prototypical system composed by ultra-thin films of magnetic molecules [Co-tetraphenyl-porphyrins (Co-TPP)] grown on a ferromagnetic substrate [oxygen passivated Fe(0 0 1), namely the Fe(0 0 1)-p(1 × 1)O surface]. Low Energy electron diffraction (LEED) and scanning tunneling microscopy (STM), coupled with first-principles calculations, reveal the formation of a commensurate superstructure at monolayer coverage, made by a square array of flat-lying TPP molecules. UV-photoemission and inverse photoemission spectroscopies (UPS and IPES) are used to investigate their electronic structure. Similar to our previous results on the Zn-TPP growth on Fe(0 0 1)...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
The choice of low-interacting substrates to support a molecular layer is extremely relevant for the ...
The choice of low-interacting substrates to support a molecular layer is extremely relevant for the ...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We propose a method to grow metal tetraphenyl porphyrin (MTPP) molecular layers where a long-range s...
Tetra-phenyl prophyrins (TPP) are an interesting class of organic molecules characterized by a ring ...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
The choice of low-interacting substrates to support a molecular layer is extremely relevant for the ...
The choice of low-interacting substrates to support a molecular layer is extremely relevant for the ...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We present a multitechnique investigation of the structural and electronic properties of the prototy...
We propose a method to grow metal tetraphenyl porphyrin (MTPP) molecular layers where a long-range s...
Tetra-phenyl prophyrins (TPP) are an interesting class of organic molecules characterized by a ring ...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
Metal-tetraphenyl-porphyrin (M-TPP) molecules typically self-assemble forming square-like superlatti...
The choice of low-interacting substrates to support a molecular layer is extremely relevant for the ...
The choice of low-interacting substrates to support a molecular layer is extremely relevant for the ...