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Protein-poly(silicic) acid interactions at the air/solution interface

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JOURNAL OF PHYSICAL CHEMISTRY B
卷 109, 期 44, 页码 20878-20886

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AMER CHEMICAL SOC
DOI: 10.1021/jp051908k

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The structure of the interface generated by a spread layer of ss-casein on an aqueous colloidal poly(silicic) acid subphase is described. The results are compared with data for the protein alone spread at the air/water interface and the silicate solution. Films develop at the air-solution interface and a strong pH dependence of the interaction causing this is demonstrated. Reflectometry with X-rays and neutrons was used to probe the interaction as a function of subphase pH and film compression. Film thickness, tau/angstrom, scattering length density, rho/angstrom(-2), water volume fraction, phi w, and surface coverage, Gamma/mg m(-2), were used to quantify the interfacial structure. Where possible, the X-ray and neutron data sets were co-refined enabling phi(w), to be evaluated without assumption regarding the protein density. At pH 5-7, strong protein-silicate interaction occurred, the interface comprising three regions: a discrete protein upper layer on top of a 15 +/- 2 angstrom layer of silicated material followed by a diffuse layer that extended into the subphase.

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