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【期刊论文】Controlled synthesis of LaPO4 and CePO4 nanorods/nanowires
吴庆银, Minhua Cao, Changwen Hu, , Qingyin Wu, Caixin Guo, Yanjuan Qi and EnboWang
Nanotechnology 16(2005)282-286,-0001,():
-1年11月30日
LaPO4 and CePO4 nanorods/nanowires with controlled aspect ratios have been successfully synthesized using a hydrothermal microemulsion method under mild conditions. It has been shown that the obtained LaPO4 has a monoclinic structure, while CePO4 exists in the hexagonal structure. Uniform nanorods/nanowires with diameters of 20-60nm and lengths ranging from several hundreds of nanometres to several micrometres were obtained. The aspect ratios of the obtained 1D nanostructures can be fine-tuned by simply changing the [H2O]/[surfactant] molar ratios. The possible growth mechanism of LaPO4 and CePO4 nanorods/nanowires was explored in detail.
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吴庆银, Qingyin Wu a, *, Shukun Wang b, Danni Li a, Xufeng Xie a
Inorganic Chemistry Communications 5(2002)308-311,-0001,():
-1年11月30日
The decatungstomolybdoniobogermanic heteropoly acid H5 [GeW10MoNbO40] 20H2O has been prepared for the first time. The optimal proportion of the solutions of the component and the pH of the synthesis reaction are given. The product was characterized by chemical analysis, conductometric and potentiometric titration, IR, UV, XRD, 183W NMR and TG-DTA. The IR, UV, XRD and 183WNMR indicate that H5 [GeW10MoNbO40] 20H2O possesses the Keggin structure. The TG-DTA curve shows the sequence of water loss in the acid, the amount of the loss as well as the thermostability of the acid.
Heteropoly acid, Deca-tungstomolybdoniobogermanic acid, Preparation, Characterization
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【期刊论文】Synthesis and conductivity of solid high-proton conductor H5GeW10MoVO40.21H2O
吴庆银, Qingyin Wu*, Xiaoguang Sang
Materials Research Bulletin 40(2005)405-410,-0001,():
-1年11月30日
A new solid high-proton conductor decatungstomolybdovanadogermanic heteropoly acid (HPA) H5GeW10- MoVO40 21H2O has been synthesized for the first time by stepwise acidification and stepwise addition of solutions of the component elements. The product was characterized by chemical analysis, potentiometric titration, IR, UV, XRD and TG-DTA. The IR, UVand XRD indicate that H5GeW10MoVO40 21H2O possesses the Keggin structure. The TG-DTA curve shows the sequence of water loss in the acid, the amount of the loss, as well as the thermostability. The results of AC impedance measurement show that its proton conductivity is 3.58×10-4 S cm-1 at 18℃ and the activation energy for proton conduction is 31.82kJ/mol.
A., Inorganic compounds, B., Chemical synthesis, C., Infrared spectroscopy, D., Ionic conductivity
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【期刊论文】Assembling of tungstovanadogermanic heteropoly acid into mesoporous molecular sieve SBA-15
吴庆银, Hongxiao Jin a, Qingyin Wu a, *, Ping Zhang b, Wenqin Pang a, b
Solid State Sciences 7(2005)333-337,-0001,():
-1年11月30日
Heteropoly acid of Keggin structure tungstovanadogermanic (H5GeW11VO40) has been chemically anchored to the modified SBA-15 surface. The material was characterized by solid-state 29Si MAS NMR, FT-IR spectroscopy, XRD, TG-DTA and N2 adsorption experiments. The preservation of the structure of the HPA and dispersion of the cluster on the support were verified. On the bases of the spectroscopic evidences, HPA clusters were attached firmly to the surface.
Mesostructured silica, Heteropoly acid, SBA-15, Modification, Tungstovanadogermanic
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吴庆银, Yu Yang a, , Qingyin Wu c, Yihang Guo a, Changwen Hu a, b, *, Enbo Wang a
Journal of Molecular Catalysis A: Chemical 225(2005)203-212,-0001,():
-1年11月30日
A novel photocatalyst, nanoporous anatase TiO2 crystalline particles coupled by homogeneously dispersed Keggin unit, H3PW12O40/TiO2, was prepared by a simple and rapid process, i.e., at a lower temperature (200℃) by combined sol-gel and programmed temperature hydrothermal methods. The resulting material was characterized by UV diffuse reflectant spectroscopy, XRD, 31P MAS NMR, TEM, and nitrogen adsorption. This new photocatalyst exhibited visible-light photocatalytic activity to decompose 10 various organic dyes in aqueous systems. It was attempted to determine the feasibility of such a degradation by varying the chemical structures, either azoic (Congo Red (CR), Methyl Orange (MO), Ponceau G (PG), Orange II (OII), and Eriochrome Blue Black B (EB)), or anthraquinonic (Alizarin S (AS)), or heteropolyaromatic (Methylene Blue (MB)), or fluorescent (Neutral Red (NR), Rhodamine B (RB)), or sulfonic (Fuchsin Acid (FA)). The intermediates and the final products of degradation were detected by electrospray mass spectrometer (ES-MS) and ion chromatography (IC). According to the experimental results, we proposed a possible mechanism of the photodegradation of dyes under visible-light irradiation in the aqueous system.
Photocatalysis, Anatase, Polyoxometalate, Nanoporous, Visible-light irradiation, Dye, Degradation
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