SONG Xueli, Ma Xuee, YU Danfeng, et al. Study on the thermochromicbehavior of V5+doped BiPO4[J]. Acta Materiae Compositae Sinica.
Citation: SONG Xueli, Ma Xuee, YU Danfeng, et al. Study on the thermochromicbehavior of V5+doped BiPO4[J]. Acta Materiae Compositae Sinica.

Study on the thermochromicbehavior of V5+doped BiPO4

  • To investigate the reasons for the thermochromism of V5+doped BiPO4, a series of V5+ doped BiPO4 powders (BiP1−xVxO4) were prepared by hydrothermal method. The crystal structure, morphology and chemical composition of BiP1−xVxO4 were characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscope (TEM) and X-ray photoelectron spectroscopy (XPS). The crystalline phase of V5+-doped BiPO4 changes from monoclinic to hexagonal. The morphology of BiP1−xVxO4 tends from polyhedra to ellipses. TEM displays that BiVO4 and BiPO4 crystals are stacked together. With the increase of V5+ doping, the color of sample gradually changed from grayish-green to green olive at room temperature. When the temperature rose to 500℃, the color of the samples gradually turned to gray-brownand red-brown. Compared with BiPO4, V5+ doped BiPO4 exhibited reversible thermochromic behavior. Among BiP1−xVxO4, BiP0.65V0.35O4 showed the most obvious reversible change of “yellow-green↔red-brown” between 20℃ and 500℃, ∆E = 28.35. The research results of in-situ UV-Vis spectrum (in-situ UV-Vis) showed that the absorptions of BiP0.65V0.35O4 were enhanced in visible light with increasing temperature. And the spectra of sample showed a red shift from 529 nm to 560 nm. During the heating and cooling process, BiVO4 in BiP0.65V0.35O4 exhibited a reversible phase transition between monoclinic and tetragonal phases using in-situ XRD. This transition is the main reason for reversible thermochromic of BiP0.65V0.35O4.
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