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V-containing ZrO2 inorganic yellow nano-pigments prepared by hydrothermal approach

机译:含V含ZrO2无机黄色纳米颜料,由水热法制备

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Recent results on the preparation, characterization and color properties of the V-containing ZrO2 inorganic yellow nano-pigment are reported. A series of monoclinic V-ZrO2 solid solution nanocrystals (VxZr1-xO2, being x = 0, 0.1, 0.02, 0.03, 0.04, 0.05, 0.065, 0.08 and 0.1) were prepared straightforward by hydrothermal processing of mixtures of zirconyl nitrate and ammonium metavanadate in water. Interestingly, the crystalline precipitated obtained by hydrothermal processing at 140 degrees C for 3 d was almost entirely V-containing ZrO2 nanocrystals with the structure of monoclinic zirconia for the whole range of compositions. Lattice parameters changes along the series of prepared samples annealed at 700 degrees C indicated the increase of vanadium content inside the monoclinic vanadium-zirconia crystalline phase up to the nominal amount of vanadium of x = 0.05. Transmission and scanning electron. micrographs of the hydrothermal precipitates showed the formation of defined sets of loosely assembled primary nanocrystals sized 3-4 nm in a disc-like larger motif sized in the range between 25 and 70 nm, depending on the nominal amount of vanadium dopant. Further annealing at 700 degrees C for 1 h gave rise to compact, discrete, morphologically well-defined secondary nanocrystals without size changes and with improved chromatic coordinates. The high stability in aqueous dispersion and the structural and microstructural characteristics of the prepared and annealed nanocrystals up to 1200 degrees C made them good candidates as nano-pigments for digital decoration.
机译:据报道了含V含ZrO2无机黄纳米颜料的制备,表征和颜色性质的最新结果。通过锆硝酸锆和甲烷铵的混合物,直接制备一系列单冠状V-ZrO2固溶体纳米晶(VxZR1-XO2,为x = 0,0.1,0.08和0.03,0.03,0.04,0.05,0.06,0.0.1)在水里。有趣的是,通过在140℃下的水热处理获得3d的结晶沉淀,几乎完全是含有ZrO2纳米晶体,其具有单岩氧化锆的结构,用于整个组合物。晶格参数沿着700℃退火的制备样品的系列变化表明单斜钒 - 氧化锆结晶相内的钒含量的增加达到X = 0.05的标称钒量。传输和扫描电子。水热沉淀物的显微照片显示,在钒掺杂剂的标称数量的含量的钒量,在圆盘状较大的主题中形成定义的松散组装的初级纳米晶体大小的3-4nm的形成。在700℃下进一步退火1小时,产生紧凑,离散的形态良好的次级纳米晶体,而没有尺寸变化和改善的色谱。高达1200℃的制备和退火的纳米晶体的水分散体的高稳定性和制备的纳米晶体的结构和微观结构特征使其成为数字装饰的纳米颜料的良好候选者。

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