Han Zhen, Si Yubing, Dong Xi-Yan, Hu Jia-Hua, Zhang Chong, Zhao Xuan-Hui, Yuan Jia-Wang, Wang Yan, Zang Shuang-Quan
Henan Key Laboratory of Crystalline Molecular Functional Materials, and College of Chemistry, Zhengzhou University, Zhengzhou 450001, China.
College of Chemistry and Chemical Engineering, Henan Polytechnic University, Jiaozuo 454000, China.
J Am Chem Soc. 2023 Mar 22;145(11):6166-6176. doi: 10.1021/jacs.2c12055. Epub 2023 Mar 13.
Superstructures made from nanoscale clusters with new collective properties are promising in high-tech applications; however, chiral superstructures remain elusive, and the limited intercluster coupling effect at room temperature hampers the tailoring of collective properties. Here, we show that from chiral monomeric copper clusters to two enantiomeric pairs of supercrystals with distinct phases, the absorption band edge red-shifts by over 1.3 eV, with photoluminescence and circularly polarized phosphorescence from visible (572 nm) to near-infrared (NIR, 858 nm). These supercrystals with high NIR quantum yields of up to 45% at room temperature are prototyped for night-vision imaging. In response to solvent and temperature stimuli, chiral supercrystal-to-supercrystal transformations occurred, concomitant with high-contrast optical/chiroptical switching. single-crystal X-ray diffraction (SCXRD), steady-state and time-resolved optical spectroscopy, and response experiments combined with theoretical calculations demonstrate that distance-sensitive intercluster orbital interactions contribute to the exceptional collective optical responses. Such chiral supercrystals built from subnanoscale metal clusters with novel collective chiroptical responses would be useful in the fields of information storage and NIR optical devices.
由具有新集体性质的纳米级团簇制成的超结构在高科技应用中很有前景;然而,手性超结构仍然难以捉摸,并且室温下有限的团簇间耦合效应阻碍了集体性质的定制。在这里,我们表明,从手性单体铜团簇到具有不同相的两对对映体超晶体,吸收带边缘红移超过1.3 eV,光致发光和圆偏振磷光从可见光(572 nm)到近红外(NIR,858 nm)。这些在室温下具有高达45%的近红外量子产率的超晶体被用于夜视成像原型。响应溶剂和温度刺激,发生了手性超晶体到超晶体的转变,同时伴随着高对比度的光学/手性光学切换。单晶X射线衍射(SCXRD)、稳态和时间分辨光谱以及响应实验与理论计算相结合表明,距离敏感的团簇间轨道相互作用导致了异常的集体光学响应。这种由具有新颖集体手性光学响应的亚纳米级金属团簇构建的手性超晶体将在信息存储和近红外光学器件领域中发挥作用。