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Structure‐Enhanced Photocatalytic Removal of Cr VI by a TiO 2 Superstructure with Ultrathin Rutile Nanorods and Abundant {110} Faces
Author(s) -
Xu Sichao,
Zhang Yunxia,
Wang Shuan,
Xu Junmin,
Ding Hualin,
Li Guanghai
Publication year - 2013
Publication title -
european journal of inorganic chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.667
H-Index - 136
eISSN - 1099-0682
pISSN - 1434-1948
DOI - 10.1002/ejic.201201475
Subject(s) - nanorod , rutile , photocatalysis , superstructure , chemistry , chemical engineering , adsorption , nanostructure , nanotechnology , materials science , catalysis , oceanography , organic chemistry , geology , engineering , biochemistry
Abstract Size and shape, in particular of the external surfaces, are very important factors in determining the photocatalytic activity of TiO 2 nanostructures. Here, we demonstrate that the sea‐urchin‐like rutile superstructure with ultrathin nanorods and exposed {110} faces is an excellent photocatalyst in the removal of Cr VI ions from plating wastewater. The superstructure consists of ultrathin rutile nanorods with a specific surface area of 224.4 m 2  g –1 ; the nanorods have a diameter of several nanometers, and the exposed faces are predominantly {110} faces. This special morphology exhibits a structure‐enhanced catalytic activity because it facilitates the transport of photoelectrons to the rutile nanorod {110} faces and prevents them recombining with holes. The rutile superstructure proved excellent at removing chromium from plating wastewater by photocatalytic reduction of Cr VI to Cr III in sunlight, and at adsorption of the Cr III ions. The removal effectiveness is nearly 100 % at initial Cr concentrations below 53.7 ppm, and the removal capacity can reach about 1000 mg g –1 under irradiation by sunlight for 3 hours.

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