4.6 Article

Nonlinear optical properties of Pb-La metal-organic chelidamic acid frameworks

Journal

OPTICAL MATERIALS
Volume 66, Issue -, Pages 197-200

Publisher

ELSEVIER
DOI: 10.1016/j.optmat.2017.02.015

Keywords

Metal-organic frameworks; Third-order nonlinearity; Z-scan method

Funding

  1. National Natural Science Foundation of China [51272183, 51572202]
  2. Nanotechnology Program of Suzhou [ZXG201438]
  3. Shenzhen basic research [JCYJ20150417142356651]

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Chelidamic acid, acting as ligands, reacted with metal cation of lead and lanthanum. Both of them were dissolved in water and resulted in novel MOFs complexes by using solvothermal synthesis method. The complexes were characterized by the X-ray diffraction, UV vis spectrophotometer and Z-scan measurements to investigate their morphology and optical properties. The Z-scan measurements indicated that the obtained lead metal-organic chelidamic acid frameworks showed 6.09 x 10(-12) esu of X-(3). The special structure and properties, especially the empty f-electron orbital of the rare earth elements, were used to enhance optical nonlinearity. Using one-step solvothermal synthesis method, we added lanthanum into the lead-chelidamic acid metal organic complexes. By changing the spatial configuration of the ligand in the self-assembly process, novel structural complex metals of the lead-lanthanum metal- organic chelidamic acid frameworks have been successfully synthetized, and the third-order nonlinear susceptibility of x(3)was enhanced to be 1.13 x 10(-11) esu. (C) 2017 Elsevier B.V. All rights reserved.

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