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Encapsulation of Nanoparticles for the Manufacture of Solid State Lighting Devices

机译:纳米粒子的封装用于制造固态照明装置

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Solid state lighting devices that utilize semiconducting nanoparticles (quantum dots) as the sole source of visible light emission have recently been fabricated. The quantum dots in these devices have been demonstrated to have quantum efficiencies similar to those of conventional phosphors. The dispersion and concentration of the nanoparticles within a suitable polymeric matrix was found to be critical to device performance. Yet achieving suitable concentrations and adequate dispersion implies chemical compatibility between the nanoparticles and the matrix, which must be achieved without detrimental effect on either the physical/optical properties of the matrix or the stability/surface state of the quantum dots. A number of encapsulation strategies have been identified and are discussed with regard to their effect on nanoparticle dispersion and concentration within silicone and epoxy matrices.
机译:最近制造了利用半导体纳米颗粒(量子点)作为可见光发射源的固态照明装置。已经证明这些装置中的量子点具有与常规磷光体类似的量子效率。发现纳米颗粒在合适的聚合物基质中的分散和浓度对装置性能至关重要。然而,达到合适的浓度和足够的分散意味着纳米颗粒和基质之间的化学相容性,必须在没有对矩阵的物理/光学性质或量子点的稳定性/表面状态的不利影响而达到的化学相容性。已经鉴定了许多封装策略,并在硅氧烷和环氧基质中对纳米粒子分散和浓度的影响讨论。

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