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Methods for making compositions of materials for forming coatings and layered structures including elements for scattering and passing selectively tunable wavelengths of electromagnetic energy

机译:制备用于形成涂层和层状结构的材料组合物,包括用于散射和通过选择性可调谐的电磁能量的元件

摘要

Methods are provided for forming a particular multi-layer micron-sized particle that is substantially transparent, yet that exhibits selectable coloration based on its physical properties. The disclosed physical properties of the particle are controllably selectable refractive indices to provide an opaque-appearing energy transmissive material when pluralities of the particles are suspended in a substantially transparent matrix material. Multiply-layered (up to 30+ constituent layers) particles result in an overall particle diameter of less than 5 microns. The material suspensions render the particles deliverable as aspirated or aerosol compositions onto substrates to form layers that selectively scatter specific wavelengths of electromagnetic energy while allowing remaining wavelengths of the incident energy to pass. The disclosed particles and material compositions uniquely implement optical light scattering techniques in energy (or light) transmissive layers that appear selectively opaque, while allowing 80+% of the energy impinging on the light incident side to pass through the layers.
机译:提供了形成特定的多层微米尺寸粒子的方法,该颗粒基本上是透明的,但是,基于其物理性质表现出可选色。所公开的颗粒的物理性质是可控制的可选择的折射率,以在多个颗粒悬浮在基本上透明的基质材料中时提供不透明的能量透射材料。乘法层(最多30遍成分层)颗粒导致总粒径小于5微米。材料悬浮液使颗粒可将吸气或气溶胶组合物可递送到基板上以形成可选择性地散射电磁能量的比波长的层,同时允许入射能量的剩余波长通过。所公开的颗粒和材料组合物在选择性地不透明的能量(或光)透射层中唯一地实现光学光散射技术,同时允许撞击光入射侧的80 +%的能量以穿过层。

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