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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Color Tunable Pigments with High NIR Reflectance in Terbium-Doped Cerate Systems for Sustainable Energy Saving Applications
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Color Tunable Pigments with High NIR Reflectance in Terbium-Doped Cerate Systems for Sustainable Energy Saving Applications

机译:彩色可调谐颜料,具有高NIR反射率,用于可持续节能应用的铽掺杂系统

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Color tunable pigments from yellow to red hues were developed in Tb-doped A(2)CeO(4) (A = Sr and Ba) system by the conventional ceramic route. The developed pigments were analyzed for their phase purity, chemical oxidation state, elemental analysis, morphology, and optical properties by various advanced techniques. The Ba substitution in Sr2-xCe0.6Tb0.4O0.4 gently shifts the absorption edge to higher wavelengths producing bright yellows to reddish orange colors whereas the Tb substitution in Ba2Ce1-xTbxO4 allows abrupt shift in the absorption edge to longer wavelengths leading analysis indicates the modifications of Tb3+ concentrations in both the environments due to metal to metal charge transfer transitions induced by lattice expansion. Typically the compositions SrBaCe0.6Tb0.4O4 (yellow; b* = 75.36, R = 91%) and BaCe0.6Tb0.4O4 (red; a* = 30.09, R = 89%) exhibit brilliant coloristic and reflectance properties. The applicability studies revealed good coloring performance in the polymer matrix and on concrete slab with high solar reflectance. Further, the pigments are proven to be weather resistant in acid/alkali/moisture atmospheres with good thermal stability. These color characteristics with high solar reflectance of sustainable and ecofriendly compositions make them promising colorants for exterior coating formulations to mitigate the cooling energy consumption.
机译:通过传统陶瓷路线在TB掺杂A(2)CEO(4)(A = SR和BA)系统中开发了黄色至红色色调的颜色可调颜料。通过各种先进技术分析其相纯度,化学氧化态,元素分析,形态和光学性质的显影色素。 SR2-XCE0.6TB0.4O0.4中的BA替换将吸收边缘轻轻移至更高波长的吸收边缘,产生明亮的大黄色,而BA2CE1-XTBXO4中的TB取代允许在吸收边缘突然移位到更长的波长前导分析表明用金属与晶格膨胀引起的金属电荷转移过渡的环境变化TB3 +浓度。通常,组合物Srbace0.6tb0.4O4(黄色; b * = 75.36,r = 91%)和bace0.6tb0.4O4(红色; a * = 30.09,r = 89%)表现出辉煌的色彩和反射性能。适用性研究揭示了聚合物基质和高太阳反射率的混凝土板上的良好着色性能。此外,经过耐热稳定性的酸/碱/水分大气中的颜料被证明是耐候性的。这些具有高太阳能反射和Ecofriendly的组成的颜色特性使其成为外部涂层制剂的有希望的着色剂,以减轻冷却能耗。

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