The present work is a comparative study of possible adsorption structures of the conjugated molecule acrylonitrile on Si(001) employing the state of the art pseudopotential method, within a generalized gradient approximation to the density functional theory. In the recent literature it is proposed the interaction of acrylonitrile with Si(001) through a cycloaddition reaction of the cyano group, in competition with the bounding of the two outer atoms of the molecule skeleton with the Si dimer in cross-dimer and cross-trench geometries; between other geometries like which correspond the reaction of the C = C bond with a Si dimer. Starting from a large number of configurations our calculations favor the planar cycloaddition through the termina...
Multi-reference as well as single-reference quantum mechanical methods were adopted to study the pot...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Motivated by the selective binding of multifunctional organic molecules at the semiconductor surface...
The present work is a comparative study of possible adsorption structures of the conjugated molecule...
The present work is a comparative study of possible adsorption structures of the conjugated molecule...
The present work is a comparative study of possible adsorption structures of the conjugated molecule...
Mme Nelly LACOME Présidente M. Philippe SAUTET Rapporteur M. Gérald DUJARDIN Rapporteur M. Yves BORE...
Mme Nelly LACOME Présidente M. Philippe SAUTET Rapporteur M. Gérald DUJARDIN Rapporteur M. Yves BORE...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
The cumulative double bond (CCN), an important intermediate in synthetic organic chemistry, was succ...
In this work we combine scanning tunneling microscopy, near-edge X-ray absorption fine structure spe...
Multi-reference as well as single-reference quantum mechanical methods were adopted to study the pot...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Motivated by the selective binding of multifunctional organic molecules at the semiconductor surface...
The present work is a comparative study of possible adsorption structures of the conjugated molecule...
The present work is a comparative study of possible adsorption structures of the conjugated molecule...
The present work is a comparative study of possible adsorption structures of the conjugated molecule...
Mme Nelly LACOME Présidente M. Philippe SAUTET Rapporteur M. Gérald DUJARDIN Rapporteur M. Yves BORE...
Mme Nelly LACOME Présidente M. Philippe SAUTET Rapporteur M. Gérald DUJARDIN Rapporteur M. Yves BORE...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
In this work we employ the state of the art pseudopotential method, within a generalized gradient ap...
The cumulative double bond (CCN), an important intermediate in synthetic organic chemistry, was succ...
In this work we combine scanning tunneling microscopy, near-edge X-ray absorption fine structure spe...
Multi-reference as well as single-reference quantum mechanical methods were adopted to study the pot...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
Motivated by the selective binding of multifunctional organic molecules at the semiconductor surface...