Title of article
Monitoring the ordering in biomolecular films on vicinal silicon surfaces by reflectance difference/anisotropy spectroscopy
Author/Authors
Simona D. Silaghi *، نويسنده , , Dietrich R.T. Zahn *، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2006
Pages
4
From page
5462
To page
5465
Abstract
DNA base molecules, adenine, thymine, guanine, and cytosine may be employed as charge transport molecules in biomolecular electronic
devices. Their electronic properties are comparable with those of inorganic wide bandgap materials, e.g. GaN with the absorption onset in the near
ultra-violet (UV) range. A recent field effect transistor study based on a modified DNA base revealed that the prototype bio-transistor gives rise to a
better voltage gain compared to one based on carbon nanotubes (CNTs) [G. Mauricio, P. Visconti, V. Arima, S. D’Amico, A. Biasco, E. D’Amone,
R. Cingolani, R. Rinaldi, Nanoletters 3 (2003) 479]. Here, in situ reflectance difference/anisotropy spectroscopy (RDS/RAS) is employed under
ultra-high vacuum (UHV) conditions for monitoring the growth of DNA base molecules on vicinal hydrogen passivated Si(1 1 1) surfaces. Such
vicinal substrates consisting of steps and terraces may serves as suitable templates for molecular ordering. Indeed, RDS/RAS measurements reveal
information about molecular ordering of DNA bases induced by the density of steps on silicon surfaces. All four molecules, however, behave
differently on the vicinal substrates. The first transition dipole moments corresponding to adenine and thymine molecules align mainly
perpendicular to the step edge direction while for guanine and cytosine they align parallel to this direction, however, only in very thin layers.
The RDS/RAS signal of the guanine and cytosine layers with thicknesses above 20 nm saturates due to a loss of ordering at higher coverages.
Additionally, time-resolved RDS/RAS measurements at the silicon E2 (4.25 eV) critical point (CP) demonstrate the sensitivity to the biomolecular/
inorganic interface formation.
Keywords
Vicinal Si(1 1 1) , DNA bases , Reflectance difference/anisotropy spectroscopy
Journal title
Applied Surface Science
Serial Year
2006
Journal title
Applied Surface Science
Record number
1002191
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