发色团
材料科学
光子学
吸收(声学)
双光子吸收
金属有机骨架
共轭体系
锆
连接器
聚合物
极化(电化学)
模块化设计
非线性光学
纳米技术
光电子学
光化学
化学
非线性系统
有机化学
物理化学
光学
计算机科学
激光器
物理
复合材料
冶金
操作系统
吸附
量子力学
作者
Raghavender Medishetty,Lydia Nemec,Venkatram Nalla,Sebastian Henke,Marek Samoć,Karsten Reuter,Roland A. Fischer
标识
DOI:10.1002/anie.201706492
摘要
Abstract Multi‐photon absorption (MPA) is among the most prominent nonlinear optical (NLO) effects and has applications, for example in telecommunications, defense, photonics, and bio‐medicines. Established MPA materials include dyes, quantum dots, organometallics and conjugated polymers, most often dispersed in solution. We demonstrate how metal–organic frameworks (MOFs), a novel NLO solid‐state materials class, can be designed for exceptionally strong MPA behavior. MOFs consisting of zirconium‐ and hafnium‐oxo‐clusters and featuring a chromophore linker based on the tetraphenylethene (TPE) molecule exhibit record high two‐photon absorption (2PA) cross‐section values, up to 3600 GM. The unique modular building‐block principle of MOFs allows enhancing and optimizing their MPA properties in a theory‐guided approach by combining tailored charge polarization, conformational strain, three‐dimensional arrangement, and alignment of the chromophore linkers in the crystal.
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