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Indium(III) and Gallium(III) phthalocyanines-based nanohybrid materials for optical limiting
Authors:Huili Gu  Shuai Li  Jun Wang  Werner J Blau  Yu Chen
Affiliation:1. Key Lab for Adv. Mater., Institute of Applied Chemistry, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China;2. Key Lab of Materials for High-Power Laser, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China;3. School of Physics and the Centre for Research on Adaptative Nanostructures and Nanodevices(CRANN), Trinity College Dublin, Dublin 2, Ireland
Abstract:Linear and nonlinear optical properties of a phthalocyanine (Pc)-based nanohybrid material PCIGS Cu2(tBu4PcGa)(tBu4PcIn)S2TPP2] are described. The overall aggregation of phthalocyanines in poly(methylmethacrylate) (PMMA) films was evident, which is indicated by the broadening of linear spectra in the Q-band region and the shift of wavelength. Upon excitation with nanosecond laser pulse at 355 nm, the transient absorption band appeared at about 500 nm is attributed to the triplet–triplet absorption of the Pcs. For PCIGS and its starting materials tBu4PcGaCl and tBu4PcInCl, all Z-scans exhibit a decrease in transmittance about the focus typical of an induced positive nonlinear absorption of incident light. The absorption mechanism is due to population of excited states through a multi-step nonlinear absorption. When these Pc compounds were embedded into a commercially available polymer PMMA, all the Pc/PMMA composites display much larger nonlinear absorption coefficient and lower saturable fluence for optical limiting when compared to the same Pc molecules in solution. However, in contrast to tBu4PcGaCl and tBu4PcInCl, PCIGS displayed decreased optical limiting response, possibly due to competing electron accepting processes in the In and Ga metals, and the highly ordered structure of the PCIGS complex itself.
Keywords:Composite materials  Nanostructures  Optical materials  Thin films  Optical properties
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