Abstract:
Manganese vanadium tantalum oxide that can be represented by the formula MnxVyTazOw, where 1≦x≦3, 0.001≦y≦3, 0.001≦z≦2, and w=7, and alternately, x=1.25≦x≦2.45, 0.1≦y≦2.39, 0.2≦z≦1.9, and w=7, methods of producing MnxVyTazOw, a pigment coated with MnxVyTazOw and a chalcogenide glass layer, and a method of producing the coated pigment are described. The disclosed manganese vanadium tantalum oxide has superior near-infrared reflective properties. The disclosed methods of producing the manganese vanadium tantalum oxide provide products with superior phase purity, appearance and performance and take health and safety into consideration. The construction of the disclosed coated pigment combines the reflective properties of the substrate with the near-infrared reflective properties of MnxVyTazOw, while the chalcogenide glass layer provides aesthetic appeal. The disclosed method of producing the coated pigment involves physical vapor deposition of MnxVyTazOw, and the chalcogenide glass layer.
Abstract:
Manganese vanadium tantalum oxide that can be represented by the formula MnxVyTazOw, where 1≦x≦3, 0.001≦y≦3, 0.001≦z≦2, and w=7, and alternately, x=1.25≦x≦2.45, 0.1≦y≦2.39, 0.2≦z≦1.9, and w=7, methods of producing MnxVyTazOw, a pigment coated with MnxVyTazOw and a chalcogenide glass layer, and a method of producing the coated pigment are described. The disclosed manganese vanadium tantalum oxide has superior near-infrared reflective properties. The disclosed methods of producing the manganese vanadium tantalum oxide provide products with superior phase purity, appearance and performance and take health and safety into consideration. The construction of the disclosed coated pigment combines the reflective properties of the substrate with the near-infrared reflective properties of MnxVyTazOw, while the chalcogenide glass layer provides aesthetic appeal. The disclosed method of producing the coated pigment involves physical vapor deposition of MnxVyTazOw and the chalcogenide glass layer.
Abstract translation:锰钒氧化钽,其可以由式Mn x V y TazOw表示,其中1≦̸ x≦̸ 3,0.001≦̸ y≦̸ 3,0.001≦̸ z≦̸ 2和w = 7,或者,x = 1.25≦̸ x& ,0.1≦̸ y≦̸ 2.39,0.2≦̸ z≦̸ 1.9和w = 7,描述了生产MnxVyTazOw的方法,涂覆有Mn x V y TazOw和硫族化物玻璃层的颜料以及制备涂层颜料的方法。 所公开的锰钒氧化钽具有优异的近红外反射性能。 所公开的锰钒钽氧化物的制造方法提供具有优异的相纯度,外观和性能的产品,并考虑健康和安全性。 所公开的涂层颜料的结构将基材的反射性能与Mn x V y TazOw的近红外反射性质结合,而硫族化物玻璃层提供了美学吸引力。 所公开的生产涂层颜料的方法包括物理气相沉积Mn x V y TazOw和硫族化物玻璃层。