2013
DOI: 10.1016/j.jphotochem.2012.12.014
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Improved photocatalytic activity of g-C3N4/TiO2 composites prepared by a simple impregnation method

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Cited by 249 publications
(112 citation statements)
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“…From the XPS spectra of C 1s in Figure 6c, three peaks centered at 285, 286.2, and 288.9 eV can be observed in all three samples. The main C 1s corresponds to adventitious carbon species presenting a band located at 284.4 eV [44]. The small shoulder at 286.4 and 288.9 eV could be accounted for with the C-N-C and C-(N)3 groups of g-C3N4, respectively [26,45,46].…”
Section: Phase Structures and Morphologymentioning
confidence: 93%
“…From the XPS spectra of C 1s in Figure 6c, three peaks centered at 285, 286.2, and 288.9 eV can be observed in all three samples. The main C 1s corresponds to adventitious carbon species presenting a band located at 284.4 eV [44]. The small shoulder at 286.4 and 288.9 eV could be accounted for with the C-N-C and C-(N)3 groups of g-C3N4, respectively [26,45,46].…”
Section: Phase Structures and Morphologymentioning
confidence: 93%
“…2. Present isotherm of bare TiO 2 is assigned to type IV according to the IUPAC classification, displaying a H 2 hysteresis loop of a capillary condensation [19]. The feature of type IV isotherm is closely relevant to the presence of mesopores during aggregation of anatase nanoparticles [21,28], which is also identified by the average pore size of 3.43 nm calculated with the BJH method from adsorption data.…”
Section: Nitrogen Adsorptionmentioning
confidence: 98%
“…Several investigations have reported that composites of bulk g-C 3 N 4 and TiO 2 structures of both semiconductors are well matched and readily form heterojunction interfaces along boundaries [3,[18][19][20][21][22]. Yan et al reported that g-C 3 N 4 -TiO 2 composites prepared in a direct grind manner could catalyze hydrogen evolution under visible light [3].…”
Section: Introductionmentioning
confidence: 99%
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“…Nevertheless, most of these works had mainly focused on using g-C 3 N 4 /TiO 2 composite as a catalyst under visible light irradiation to produce H 2 [28,29] or to degrade common organics, such as dye [30][31][32], phenol [33,34], formaldehyde [35], or dibenzothiphene [36]. To date, there has been little research into the photocatalytic decontamination ability of g-C 3 N 4 /TiO 2 and its mineralization mechanism for EOCs in water, especially for the decomposition of pharmaceuticals.…”
Section: Introductionmentioning
confidence: 99%