State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun 130012, P. R. China.
Nanoscale. 2017 Aug 31;9(34):12618-12627. doi: 10.1039/c7nr03985a.
Luminescent Cu nanoclusters (NCs) are potential phosphors for illumination and display, but the difficulty in achieving full-color emission greatly limits practical applications. On the basis of our previous success in preparing Cu NC self-assembly architectures with blue-green and yellow emission, in this work, Cu NC self-assembly architectures with strong red emission are prepared by replacing alkylthiol ligands with aromatic thiols. The introduction of aromatic ligands is able to influence the ligand-to-metal charge transfer and/or ligand-to-metal-metal charge transfer, thus permitting the tuning of the emission color and enhancing of the emission intensity. The emission color can be tuned from yellow to dark red by choosing the aromatic ligands with different conjugation capabilities, and the photoluminescence quantum yield is up to 15.6%. Achieving full-color emission Cu NC self-assembly architectures allows the fabrication of Cu NC-based white light-emitting diodes.
发蓝色-绿色和黄色光的铜纳米团簇(NCs)自组装结构,在此工作中,通过用芳香硫醇取代烷基硫醇配体,制备出发强红光的铜 NC 自组装结构。芳香配体的引入可以影响配体到金属的电荷转移和/或配体到金属-金属的电荷转移,从而调节发射颜色并增强发射强度。通过选择具有不同共轭能力的芳香配体,发射颜色可以从黄色调谐到深红色,荧光量子产率高达 15.6%。实现全色发射的铜 NC 自组装结构允许制备基于铜 NC 的白光发光二极管。