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NIR reflective, anticorrosive magenta pigment for energy saving sustainable building coatings

机译:NIR反光,防腐洋红色颜料,用于节能可持续建筑涂料

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A series of inorganic pigments LiMg1-xCoxPO4 have synthesized by conventional solid-state method. Optical features of the phase pure compounds have investigated, the characteristic absorption spectra confirmed the octahedral geometry of Co2+ chromophore. The spin allowed d-d transition in the visible region attributed to the excellent magenta hue of the pigment series. The best composition LiMg0.8Co0.2PO4 exhibited colour a* = 26.45, b* = -26.83 and NIR reflectance 67% and total solar reflectance (TSR) 55%. Acrylic coatings of LiMg0.8Co0.2PO4 on concrete and Al roofing sheet have successfully retained the pigment properties. Subsequent temperature shielding experiment and thermal images of coatings revealed 7 degrees C reduction in interior temperature for the magenta coatings compared to commercial CoAl2O4. The pigment LiMg0.8Co0.2PO4 shown excellent corrosion resistance on steel epoxy coatigs, because of the active phosphatization mechanism. The charge transfer resistance R-ct = 9.3 x 10(9) Omega cm(2), of the coatings are 4 order higher than that of bare and CoAl2O4 loaded epoxy coatings. In addition, 10 wt% of the pigment shown an intense colour in transparent PMMA matrix, substantiated the colour deliverability of the material. Eventually, the studies concluded that LiMg0.8Co0.2PO4 could be a potential inorganic pigment for developing an anticorrosive 'cool' paint for energy efficient buildings.
机译:一系列无机颜料LiMG1-Xcoxpo4通过常规固态方法合成。研究了相纯化合物的光学特征,特征吸收光谱证实了CO 2 +发色团的八面体几何形状。旋转允许在可见区域中的D-D转换,其归因于颜料系列的优异品红色色调。最佳的组成LiMG0.8Co0.2PO4展示颜色A * = 26.45,B * = -26.83和NIR反射率67%和总太阳能反射(TSR)55%。 MING0.8CO0.2PO4上的丙烯酸涂层在混凝土和AL屋顶板上成功地保留了颜料特性。与商业煤2O4相比,随后的涂层温度屏蔽实验和涂层的热图像显示了品红色涂层的内部温度降低。由于活性的磷化化机制,颜料LIMG0.8CO0.2PO4在钢环氧树脂上显示出优异的耐腐蚀性。涂层的电荷转移电阻R-CT = 9.3×10(9)ωcm(2)比裸露和煤2O4负载的环氧涂料高4阶。另外,10wt%的颜料显示在透明PMMA矩阵中的强烈颜色,证实了材料的颜色可递送性。最终,研究得出的结论是,LiMG0.8Co0.2PO4可能是潜在的无机颜料,用于开发用于节能建筑的防腐“酷”涂料。

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