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Efficient synthesis and optical properties of highly luminescent copper nanoclusters

机译:高发光铜纳米能量的高效合成和光学性能

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Fluorescent nanomaterials such as metal nanoclusters (NCs) have become one of the most essential nanomaterial and attracted abundant attention in research due to their excellent photophysical properties and wide range of applications. Furthermore, metal nanoclusters have been predominantly investigated owing to its excellent optical properties, simple synthetic routes,low toxicity and excellent photostability. However, limited advancements and progress have been executed in fabricating hydrophilic and highly luminescent metal NCs. Copper is an eco-friendly, low-cost metal which is progressively advancing into focus for metal NCs research. In comparison to the extensively studied gold nanoclusters (Au NCs) and silver nanoclusters (Ag NCs), systematic and analytical applications of the copper nanoclusters (Cu NCs) are relatively limited and still at an early stage. In this review, we fixate on contemporary advances in the analytical applications of Cu NCs based on their behavior and properties of light. This work specifically addresses optical properties and some emerging applications of Cu NCs. The study seeks to unravel some unique photophysical properties of Cu NCs in its solid state, namely concentration/aggregation induced emission enhancement, thermally activated delayed fluorescence (TADF), by which both singlet and triplet excitons can be harvested. Furthermore, the as-synthesized Cu NCs used in this study was remarkably excellent, garnering ~20% quantum yield in colloidal and solid-state form, respectively. CuNC/PVA nano-composites can exhibit unique solid-state- induced dual-mode emissions of thermally activated delayed fluorescence (TADF) and phosphorescence at ambient environment. The outstanding performance of Cu NCs in solid-state makes it an excellent biocompatible nano-emitters light-emitting devices.
机译:荧光纳米材料如纳米团簇(NCS)已经成为最重要的纳米材料之一,并吸引了大量的研究关注,由于其优良光物理性质和广泛的应用。此外,金属纳米团簇已经主要由于其优异的光学特性,简单的合成路线,低毒性和优良的光稳定性研究。然而,有限的进步和进展已在制造亲水性和高度发光金属的NC来执行。铜是一种环保型,低成本的金属,它正在逐步推进到重点金属纳米晶研究。相比于广泛的研究金纳米簇(AU NCS)和银纳米簇(AG NCS),铜纳米团簇(铜NCS)的系统和分析应用相对有限,并且仍然在早期阶段。在这次审查中,我们注视的基础上他们的行为和光的特性铜NC的分析应用当代的进步。这项工作具体涉及的光学特性和Cu纳米晶的一些新兴应用。该研究旨在解开在其固体状态,即浓度/聚集诱导的发光增强,热活化延迟荧光(TADF),通过该两个单态和三重态激子可以收获的Cu NC的一些独特的光物理特性。此外,所合成的铜的NC在该研究中所用的是显着优异,赢得在胶体和固态形式〜20%的量子产率,分别。 CuNC / PVA纳米复合物可以在环境环境表现出热活化延迟荧光(TADF)和磷光的独特固体状态 - 诱导的双模排放。铜NC的固态的卓越性能使得它优异的生物相容性纳米发射器的光发射器件。

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