发色团
化学
光致发光
合理设计
激发态
吸收(声学)
光子学
接受者
非线性光学
纳米技术
光化学
光电子学
非线性系统
材料科学
物理
复合材料
核物理学
量子力学
凝聚态物理
作者
David C. Mayer,Aurora Manzi,Raghavender Medishetty,Benedikt Winkler,Christian Schneider,Gregor Kieslich,Alexander Pöthig,Jochen Feldmann,Roland A. Fischer
摘要
Coordination polymers show great potential for the tailored design of advanced photonic applications by employing crystal chemistry concepts. One challenge for achieving a rational design of nonlinear optically active MOF materials is deriving fundamental structure-property relations of the interplay between the photonic properties and the spatial arrangements of optically active chromophores within the network. We here investigate two-photon-absorption (TPA)-induced photoluminescence of two new MOFs based on a donor-acceptor tetraphenylphenylenediamine (tPPD) chromophore linker (H4TPBD) and Zn(II) and Cd(II) as metal centers. The TPA efficiencies are controlled by the network topologies, degree of interpenetration, packing densities, and the specific spatial arrangement of the chromophores. The effects can be rationalized within the framework of established excited-state theories of molecular crystals. The results presented here demonstrate the key effect of chromophore orientation on the nonlinear optical properties of crystalline network compounds and allow for establishing quantitative design principles for efficient TPA materials.
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