Biomolecule-Biomaterial Interaction: A DFT-D Study of Glycine Adsorption and Self-Assembly on Hydroxylated Cr2O3 Surfaces

被引:46
作者
Costa, D. [1 ]
Garrain, P. -A. [1 ]
Diawara, B. [1 ]
Marcus, P. [1 ]
机构
[1] Chim Paristech, Ecole Natl Super Chim Paris, CNRS ENSCP UMR 7045, Lab Physicochim Surfaces, F-75005 Paris, France
关键词
DENSITY-FUNCTIONAL THEORY; BOVINE SERUM-ALBUMIN; STAINLESS-STEEL SURFACE; AMINO-ACIDS; AB-INITIO; PASSIVE FILMS; CHEMICAL-COMPOSITION; BETA-LACTOGLOBULIN; AQUEOUS-SOLUTIONS; INTERFACE;
D O I
10.1021/la104317j
中图分类号
O6 [化学];
学科分类号
070301 [无机化学];
摘要
The adsorption of glycine, the building block of amino acids, on hydroxylated (0001)-Cr2O3 model surfaces, representing the stainless steel passive film surface, was modeled by means of the GGA + U Method. The roles of glycine coverage and surface termination (hydroxylated Cr- and O-terminated surfaces) on the adsorption mode and self-assembly properties were explored. The hydroxylated Cr-terminated Cr2O3 surface, which presents two types of (H)OH groups exhibiting different acidic character, is more reactive than the hydroxylated O-terminated surface, where one single type of OH group is present, for all adsorption modes and coverages considered. Outer sphere adsorption occurs in the zwitterion form, stabilized at low coverage through H-bond formation with coadsorbed water molecules, and at the monolayer coverage by glycine self-assembling. The OH substitution by glycinate is favored on the hydroxylated Cr-terminated surface and not on the O-terminated one. The inclusion of dispersion forces does not change the observed tendencies. An atomistic thermodynamics approach suggests that outer sphere adsorption is thermodynamically favored over inner sphere adsorption in the whole domain of glycine concentration. The obtained SAM's free energies of formation are rationalized in a model considering the balance between sublimation and solvation free energies, and extrapolated to other amino acids, to predict the SAMs formation above hydroxylated surfaces. It is found that hydrophobic AA tend to self-assemble at the surface, whereas hydrophilic ones do not.
引用
收藏
页码:2747 / 2760
页数:14
相关论文
共 89 条
[1]
A Density Functional Theory Study of the Interaction of Collagen Peptides with Hydroxyapatite Surfaces [J].
Almora-Barrios, Neyvis ;
de Leeuw, Nora H. .
LANGMUIR, 2010, 26 (18) :14535-14542
[2]
Density Functional Theory Study of the Binding of Glycine, Proline, and Hydroxyproline to the Hydroxyapatite (0001) and (01(1)over-bar0) Surfaces [J].
Almora-Barrios, Neyvis ;
Austen, Kat F. ;
de Leeuw, Nora H. .
LANGMUIR, 2009, 25 (09) :5018-5025
[3]
DFT periodic study of the adsorption of glycine on the anhydrous and hydroxylated (0001) surfaces of α-alumina [J].
Arrouvel, Corinne ;
Diawara, Boubakar ;
Costa, Dominique ;
Marcus, Philippe .
JOURNAL OF PHYSICAL CHEMISTRY C, 2007, 111 (49) :18164-18173
[4]
An ab initio study of adsorption of alanine on the chiral calcite(2131) surface [J].
Asthagiri, A. ;
Hazen, R. M. .
MOLECULAR SIMULATION, 2007, 33 (4-5) :343-351
[5]
Interactions of amino acids with H-ZSM-5 zeolite: An embedded ONIOM study [J].
Boekfa, Bundet ;
Pantu, Piboon ;
Limtrakul, Jumras .
JOURNAL OF MOLECULAR STRUCTURE, 2008, 889 (1-3) :81-88
[6]
BOUZOUBAA A, 2010, CORROS SCI
[7]
Metal oxide surfaces and their interactions with aqueous solutions and microbial organisms [J].
Brown, GE ;
Henrich, VE ;
Casey, WH ;
Clark, DL ;
Eggleston, C ;
Felmy, A ;
Goodman, DW ;
Grätzel, M ;
Maciel, G ;
McCarthy, MI ;
Nealson, KH ;
Sverjensky, DA ;
Toney, MF ;
Zachara, JM .
CHEMICAL REVIEWS, 1999, 99 (01) :77-174
[8]
Adsorption of phenol on graphite(0001) and α-Al2O3(0001):: Nature of van der Waals bonds from first-principles calculations [J].
Chakarova-Kack, Svetla D. ;
Borck, Oyvind ;
Schroder, Elsebeth ;
Lundqvist, Bengt I. .
PHYSICAL REVIEW B, 2006, 74 (15)
[9]
Growth of boehmite particles in the presence of xylitol: morphology oriented by the nest effect of hydrogen bonding [J].
Chiche, David ;
Chizallet, Celine ;
Durupthy, Olivier ;
Channeac, Corinne ;
Revel, Renaud ;
Raybaud, Pascal ;
Jolivet, Jean-Pierre .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2009, 11 (47) :11310-11323
[10]
Kinetics of conditioning layer formation on stainless steel immersed in seawater [J].
Compère, C ;
Bellon-Fontaine, MN ;
Bertrand, P ;
Costa, D ;
Marcus, P ;
Poleunis, C ;
Pradier, CM ;
Rondot, B ;
Walls, MG .
BIOFOULING, 2001, 17 (02) :129-145