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  4. Synthesis, characterization, vibrational spectroscopy, and factor group analysis of partially metal-doped phosphate materials
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Synthesis, characterization, vibrational spectroscopy, and factor group analysis of partially metal-doped phosphate materials

Author(s)
Sronsri, Chuchai
Boonchom, Banjong
Date Issued
April 5, 2018
Type
Article
DOI
10.1016/j.saa.2018.01.034
Abstract
A simple precipitating method was used to synthesize effectively a partially metal-doped phosphate hydrate (Mn0.9Mg0.1HPO4·3H2O), whereas the thermal decomposition process of the above hydrate precursor was used to obtain Mn1.8Mg0.2P2O7 and LiMn0.9Mg0.1PO4 compounds under different conditions. To separate the overlapping thermal decomposition peak, a deconvolution technique was used, and the separated peak was applied to calculate the water content. The factor group splitting analysis was used to exemplify their vibrational spectra obtained from normal vibrations of HPO42−, H2O, P2O74− and PO43− functional groups. Further, the deconvoluted bending mode of water was clearly observed. Mn0.9Mg0.1HPO4·3H2O was observed in the orthorhombic crystal system with the space group of Pbca (D2h15). The formula units per unit cell were found to be eight (Z = 8), and the site symmetric type of HPO42− was observed as Cs. For the HPO42− unit, the correlation filed splitting analysis of type C3v − Cs − D2h15 was calculated and had 96 internal modes, whereas H2O in the above hydrate was symbolized as C2v − Cs − D2h15 and had 24 modes. The symbol C2v − Cs − C2h3 was used for the correlation filed splitting analysis of P2O74− in Mn1.8Mg0.2P2O7 (monoclinic, C2/m (C2h3), Z = 2, and 42 modes). Finally, the symbol Td − Cs − D2h16 was used for the correlation filed splitting analysis of PO43− in LiMn0.9Mg0.1PO4 (orthorhombic, Pnma (D2h16), Z = 4, and 36 modes).
Citation
Spectrochimica Acta Part A Molecular and Biomolecular Spectroscopy, 194, 230-240, 2018
Subjects

Deconvolution techniq...

Factor group splittin...

Partially metal-doped...

Thermal decomposition...

Vibrational spectra

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