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Nanoscale triplet exciton diffusion via imaging of up-conversion emission from single hybrid nanoparticles in molecular crystals

机译:通过成像纳米三重态激子扩散上转换发射从单一的混合纳米粒子分子晶体

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Up-conversion materials composed of donor and acceptor molecules which convert low energy photons into higher energy ones by triplet-triplet annihilation can improve the sensitivity of photocatalysts or the efficiency of solar cells. The use of crystalline materials can lead to a decrease in the up-conversion threshold intensity due to increased diffusion length L-T of triplet excitons. Here, we demonstrate direct microscopic imaging of triplet exciton diffusion in polycrystalline films. The generation of high local density of triplet states is achieved by functionalizing alumina nanospheres with donor molecules and dispersing them in the acceptor films. Diffusion of the triplet excitons and up-converted emission are reflected in enlarged microscopic images of the nanoparticles. Analysis provides the average L-T values of 491 nm for the acceptor of polycrystalline anthracene and 172 nm for polycrystalline 9,10-diphenylanthracene, and reveals large distributions of the diffusion characteristics. These average values are more than an order of magnitude larger than L-T obtained by a conventional method, and highlight the need for accurate nanoscale characterization of the up-conversion materials.
机译:上转换材料组成的捐赠者受体分子低能量的转换光子转化为更高的能量的三连音三连音毁灭可以改善灵敏度的催化剂或效率的太阳能电池。会导致减少上变频由于增加扩散阈值强度三线态激子的长度L-T。演示三联体的直接显微成像激子扩散在多晶薄膜。代高当地的三重态密度州是通过构建氧化铝团簇与供体分子和分散在受体的电影。三线态激子和up-converted排放反映在扩大的微观图像纳米粒子。值491 nm的受体多晶蒽和172海里多晶9,10-diphenylanthracene,揭示了大型分布的扩散特征。比一个数量级大于L-T通过传统的方法,并突出显示需要精确的纳米特性的上转换材料。

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