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Solid solutions of mixed metal Mn3−xMgxFe4(PO4)6orthophosphates: colouring performance within a double-firing ceramic glaze

机译:混合金属mn3 - xmgxFe4(pO4)6正磷酸盐的固溶体:双烧陶瓷釉中的着色性能

摘要

Solid solutions of mixed metal Mn3−xMgxFe4(PO4)6 orthophosphates (x = 0, 0.5, 1, 1.5, 2, 2.5, and 3) were prepared for the first time (from coprecipitate powders calcined up to 1000 °C) and characterized by thermal analysis, XRD, SEM/EDX, UV–vis–NIR spectroscopy and colour measurements (CIE-L*a*b*). Orthophosphate (Mn,Mg)3−yFe4+z(PO4)6 solid solutions isotypic to Fe7(PO4)6 structure (triclinic P-1(2) spatial group) formed successfully as the major crystalline phase within the studied range of compositions, accompanied only by variable quantities of α- and/or β-Mg2P2O7 diphosphates as secondary phases. Noteworthy, the obtained solid solutions were tested as potential ceramic dyes and exhibited an interesting interaction upon enamelling within a double-firing ceramic glaze: considerable amounts of Fe segregated from the solid solutions to be stabilized as hematite particles (α-Fe2O3) in the ceramic glaze and conferring the glaze an intense dark-brown colouration, which was almost independent of the amount of Mg doping. Thus, the obtained solid solutions with a minimized Mn content (especially Mg3Fe4(PO4)6 composition, without Mn) could serve as low-toxicity Fe reservoirs to stabilize hematite in double-firing glazes and produce an interesting dark-brown colouration, being an alternative to other brown ceramic pigments containing hazardous metals (i.e. Cr, Ni, Zn, or Sb).
机译:首次制备混合金属Mn3-xMgxFe4(PO4)6正磷酸盐(x = 0、0.5、1、1.5、2、2.5和3)的固溶体(由煅烧至1000°C的共沉淀粉末制成)并进行表征通过热分析,XRD,SEM / EDX,UV-vis-NIR光谱和颜色测量(CIE-L * a * b *)。正磷酸盐(Mn,Mg)3-yFe4 + z(PO4)6固溶与Fe7(PO4)6结构(三斜P-1(2)空间基团)同型的固溶体成功地形成为所研究组成范围内的主要结晶相,仅伴有数量可变的α-和/或β-Mg2P2O7二磷酸作为第二相。值得注意的是,将所得固溶体作为潜在的陶瓷染料进行测试,并在双烧陶瓷釉中包埋后表现出有趣的相互作用:大量固溶体中的铁从固溶体中分离出来,并作为赤铁矿颗粒(α-Fe2O3)稳定在陶瓷中釉并赋予釉强烈的深棕色,这几乎与镁的掺杂量无关。因此,获得的具有最低Mn含量的固溶体(特别是Mg3Fe4(PO4)6组成,不含Mn)可以用作低毒的Fe储层,以稳定双烧釉中的赤铁矿并产生有趣的深棕色着色,是一种替代其他含有有害金属(例如Cr,Ni,Zn或Sb)的棕色陶瓷颜料。

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