TY - JOUR
T1 - Structural and diffusion properties of formamide/water mixture interacting with TiO2 surface
AU - Dushanov, E.
AU - Kholmurodov, Kh
AU - Yasuoka, K.
PY - 2013
Y1 - 2013
N2 - The photoreaction and adsorption properties on surfaces, thermal decomposition, chemical transformation, and other properties of the formamide molecule are widely used to understand the origins of the formation of biological molecules (nucleosides, amino acids, DNA, monolayers, etc.) needed for life. The titanium oxide (TiO2) surface can act both as a template on which the accumulation of adsorbed molecules like formamide occurs through the concentration effect, and as a catalytic material that lowers the activation energy needed for the formation of intermediate products. In this paper, a formamide-water solution interacting with TiO2 (anatase) surface is simulated using the molecular dynamics method. The structural, diffusion and density properties of formamide-water mixture on TiO2 are established for a wide temperature range from T = 250 K up to T = 400 K.
AB - The photoreaction and adsorption properties on surfaces, thermal decomposition, chemical transformation, and other properties of the formamide molecule are widely used to understand the origins of the formation of biological molecules (nucleosides, amino acids, DNA, monolayers, etc.) needed for life. The titanium oxide (TiO2) surface can act both as a template on which the accumulation of adsorbed molecules like formamide occurs through the concentration effect, and as a catalytic material that lowers the activation energy needed for the formation of intermediate products. In this paper, a formamide-water solution interacting with TiO2 (anatase) surface is simulated using the molecular dynamics method. The structural, diffusion and density properties of formamide-water mixture on TiO2 are established for a wide temperature range from T = 250 K up to T = 400 K.
KW - Catalysts
KW - Formamide molecule
KW - Molecular structures
KW - Surface
KW - Water
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U2 - 10.1016/j.bioorg.2013.07.002
DO - 10.1016/j.bioorg.2013.07.002
M3 - Article
C2 - 23933355
AN - SCOPUS:84881127092
SN - 0045-2068
VL - 50
SP - 11
EP - 16
JO - Bioorganic Chemistry
JF - Bioorganic Chemistry
ER -