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Mesostructured Composite Materials with Electrically Tunable Upconverting Properties

机译:具有电可调上变频特性的介观复合材料

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摘要

A promising approach of designing mesostructured materials with novel physical behavior is to combine unique optical and electronic properties of solid nanoparticles with long-range ordering and facile response of soft matter to weak external stimuli. Here, orientationally ordered nematic liquid crystalline dispersions of rod-like upconversion nanoparticles are designed, practically realized, and characterized. Boundary conditions on particle surfaces, defined through surface functionalization, promote spontaneous unidirectional self-alignment of the dispersed rod-like nanoparticles, mechanically coupled to the molecular ordering direction of the thermotropic nematic liquid crystal host. As host is electrically switched at low voltages approximate to 1 V, nanorods rotate, yielding tunable upconversion and polarized luminescence properties of the composite. Spectral and polarization dependencies are characterized and explained through invoking models of electrical switching of liquid crystals and upconversion dependence on crystalline matrices of nanorods, and their potential practical uses are discussed.
机译:设计具有新颖物理行为的介孔材料的一种有前途的方法是将固体纳米粒子的独特光学和电子特性与远程排序和软物质对弱外部刺激的容易响应相结合。在此,设计,实际实现并表征了棒状上转换纳米粒子的取向有序向列型液晶分散体。通过表面功能化定义的粒子表面边界条件促进了分散的棒状纳米颗粒的自发单向自对准,该棒状纳米颗粒机械地耦合至热致向列型液晶主体的分子有序方向。当主机在大约1 V的低压下进行电开关时,纳米棒旋转,从而产生复合材料的可调上转换和偏振发光特性。通过调用液晶的电开关模型和对纳米棒晶体矩阵的上转换依赖性来表征和解释光谱和偏振依赖性。并讨论了其潜在的实际用途。

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