Zhong Yuan, Wang Xue, Li Tingting, Yao Qiaofeng, Dong Weinan, Lu Min, Bai Xue, Wu Zhennan, Xie Jianping, Zhang Yu
State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Changchun 130012, China.
College of Materials Science and Engineering, Jilin Jianzhu University, Changchun 130012, China.
Nano Lett. 2024 Jun 12;24(23):6997-7003. doi: 10.1021/acs.nanolett.4c01377. Epub 2024 May 9.
We report that constructed Au nanoclusters (NCs) can afford amazing white emission synergistically dictated by the Au(0)-dominated core-state fluorescence and Au(I)-governed surface-state phosphorescence, with record-high absolute quantum yields of 42.1% and 53.6% in the aqueous solution and powder state, respectively. Moreover, the dynamic color tuning is achieved in a wide warm-to-cold white-light range (with the correlated color temperature varied from 3426 to 24 973 K) by elaborately manipulating the ratio of Au(0) to Au(I) species and thus the electron transfer rate from staple motif to metal kernel. This study not only exemplifies the successful integration of multiple luminescent centers into metal NCs to accomplish efficient white-light emission but also inspires a feasible pathway toward customizing the optical properties of metal NCs by regulating electron transfer kinetics.
我们报道,构建的金纳米团簇(NCs)能够产生惊人的白色发射,这是由以Au(0)为主导的核态荧光和以Au(I)为主导的表面态磷光协同决定的,在水溶液和粉末状态下的绝对量子产率分别达到创纪录的42.1%和53.6%。此外,通过精心控制Au(0)与Au(I)物种的比例,进而控制从主链基序到金属核的电子转移速率,可在较宽的暖白色到冷白色光范围内实现动态颜色调节(相关色温从3426 K变化到24973 K)。这项研究不仅例证了将多个发光中心成功整合到金属纳米团簇中以实现高效白光发射,还为通过调节电子转移动力学定制金属纳米团簇的光学性质开辟了一条可行途径。