镧系元素
化学
镧系收缩
限制
聚合
收缩(语法)
极化(电化学)
光子学
非线性光学
非线性光学
环加成
光化学
星团(航天器)
饱和吸收
光开关
光电子学
配体(生物化学)
非线性系统
化学物理
波长
吸收光谱法
声子
聚合物
三维光学数据存储
吸收(声学)
动力学
单体
作者
Jianchuan Luo,Li‐Mei Chang,Zhi‐Gang Gu,Jian Zhang
摘要
The precise atomic-level modulation of third-order nonlinear optical (NLO) properties in lanthanide-organic clusters represent a formidable challenge in advanced photonic materials and technologies. Herein, we demonstrate a dual-modulation strategy combining the lanthanide contraction effect and ligand photoaddition to systematically tailor the structure and NLO responses of a series of lanthanide-organic clusters from a photosensitive 9-anthracenecarboxylic acid (AC) ligand: CAS-7(La ∼ Dy), CAS-8(Ho ∼ Yb), CAS-9(Lu), and the photopolymerized CAS-7(UV). Z-scan results indicate that the obtained clusters exhibit reverse saturable absorption (RSA) with strong optical limiting performance. A progressive decrease in optical limiting performance is observed from CAS-7 to CAS-9 with increasing lanthanide atomic number. Notably, exposure to 365 nm light induces the polymerization of CAS-7 to form CAS-7(UV), showing markedly enhanced NLO properties. The mechanism behind the tunability is attributed to subtle polarization changes modulated by the lanthanide contraction effect, while the photoactivation stems from a [4 + 4] cycloaddition of the AC ligand. This work establishes a versatile dual-modulating approach for precise manipulation of NLO behavior, opening pathways for advanced nonlinear photonic applications.
科研通智能强力驱动
Strongly Powered by AbleSci AI