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首页> 外文期刊>International Journal of Quantum Chemistry >Zirconium titanate ceramic pigments: Crystal structure, optical spectroscopy and technological properties
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Zirconium titanate ceramic pigments: Crystal structure, optical spectroscopy and technological properties

机译:钛酸锆陶瓷颜料:晶体结构,光谱学和技术性能

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摘要

Srilankite-type zirconium titanate, a promising structure for ceramic pigments, was synthesized at 1400 degrees C following three main doping strategies: (a) ZrTi(1-x)A(x)O(4), (b) ZrTi(1-x-y)A(x)B(y)O(4) and (c) Zr1-xCTiO4 where A = Co, Cr, Fe, Mn. Ni or V (chromophores), B = Sb or W (counterions) and C = Pr (chromophore); x = y = 0.05. Powders were characterized by XRD with Rietveld refinements and DRS in the UV-visible-NIR range; technological properties were appraised in several ceramic matrices (frits, glazes and body). Zirconium titanate can be usefully coloured with first row transition elements, giving green and greenish yellow (Co and Ni); orange-buff (Cr and V); tan-brown hues (Mn and Fe). In industrial-like synthesis conditions, a disordered structure as (Zr,Ti)O-2, with both Zr and Ti randomly distributed in the octahedral site, is achieved. Doping with chromophores and counterions induces unit cell dimensions variation and causes an oversatUration in zirconium oxide. Optical spectroscopy reveals the occurrence of Co2+, Cr3+, Fe3+, Mn2+, Mn3+, Ni2+, V3+ and V4+. The zirconium titanate pigments fulfil current technological requirements for low-temperature applications, but exhibit a limited chemico-physical stability for higher firing temperature and in chemically aggressive media. (c) 2005 Elsevier Inc. All rights reserved.
机译:三种主要的掺杂策略在1400摄氏度下合成了斯里兰卡绢晶型钛酸锆钛酸盐,它是一种有前途的陶瓷颜料结构:(a)ZrTi(1-x)A(x)O(4),(b)ZrTi(1- xy)A(x)B(y)O(4)和(c)Zr1-xCTiO4,其中A = Co,Cr,Fe,Mn。 Ni或V(发色团),B = Sb或W(抗衡离子),C = Pr(发色团); x = y = 0.05。粉末通过具有Rietveld精制的XRD和在紫外可见NIR范围内的DRS进行表征。在几种陶瓷基体(玻璃料,釉料和陶瓷)中评估了其技术性能。钛酸锆可以有用第一行过渡元素着色,从而产生绿色和绿色的黄色(Co和Ni);橘黄色(Cr和V);棕褐色色调(锰和铁)。在类似工业的合成条件下,获得了一种无序结构,如(Zr,Ti)O-2,Zr和Ti都随机分布在八面体位置。掺杂发色团和抗衡离子会引起晶胞尺寸变化,并导致氧化锆过饱和。光谱显示了Co 2+,Cr 3+,Fe 3+,Mn 2+,Mn 3+,Ni 2+,V3 +和V4 +的出现。钛酸锆颜料满足当前低温应用的技术要求,但在较高的烧成温度和化学侵蚀性介质中表现出有限的化学物理稳定性。 (c)2005 Elsevier Inc.保留所有权利。

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