Rb+ and Sr2+ adsorption at the TiO2 (110) – electrolyte interface observed by resonant X-ray reflectivity.
By:
Kohli, V; Zhang, Zhan; Park, Changyong; Fenter, Paul
Journal Name:
Langmuir
Page Number:
950-958
Volume:
26
Issue Number:
2
Publication Date:
July 12, 2012
Abstract
We report the vertical density profiles of Rb
þ
and Sr2þ
at the rutile TiO2(110)-electrolyte interface for the following
bulk electrolyte conditions, [Rb
þ
] = 1 mM at pH 11 and [Sr2þ
] = 0.1 mM at pH 10.3, using X-ray reflectivity and
resonant anomalous X-ray reflectivity. We find that Rb
þ
specifically adsorbs with a coverage of 0.080 ( 0.003
monolayer (ML) and a height of 3.72 ( 0.03 A ° above the surface Ti-O plane. In comparison, Sr2þ
adsorbs with a
coverage of 0.40 ( 0.07 ML and an average height of 3.05 ( 0.16 A ° , but with a significant vertical distribution width
(0.35 ( 0.02 A ° ). The Sr2þ
distribution in the presence of a background electrolyte ([Na
þ
] = 30 mM) was also
investigated, and it is found that, while the ion height and coverage are unchanged within the uncertainties of the
measurements, the width of the distribution is apparently increased in the presence of Na
þ
. Comparison is made with
previous results, including XR and X-ray standing waves (XSW) measurements, and molecular dynamics simulations.
Our results are in excellent agreement with a recently proposed multisite adsorption mechanism that suggests
simultaneous adsorption in two inner-sphere adsorption geometries, the tetradentate and the bidentate sites.