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Highly conjugated organometallic complexes as suitable candidates for molecular nonlinear optics applications

机译:高度共轭的有机金属配合物作为分子非线性光学应用的合适候选者

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摘要

The non-linear optical properties of π-conjugated of organometallic complexes and their derivatives have recently gained particular interest due to their extended π-system and the strong electron donating character[1]. The knowledge of the nonlinear optical response, as well as the impact of the charge transfer on the nonlinearity is very important. Such systems can be used in a variety of applications particularly for molecular nonlinear optics applications. In this contribution nonlinear optical response of self-assembled molecular corners will be also presented as such class of molecular systems could be controlled with external stimuli, particularly using ultrafast light is of great importance for nanophotonics applications like optical computing, optical switching, because they could be used as building blocks for more complicated molecular systems. Sub molecular components, like rotaxanes, catenanes could be suitable and promising candidates for nonlinear optical applications [2]. In this talk nonlinear optical response of orthogonal tetrathiafulvalene-based bricks, which can be self-organized into orthogonal dimers, through metal assisted assembly with Pd(II) or Pt(II) salts will be also discussed. A Comparative study of the nonlinear optical response will be given.[1] Sahraoui, J. Luc, A. Meghea, R. Czaplicki, J.-L. Fillaut and A. Migalska-Zalas Nonlinear optics and surface relief gratings in alkynyl-ruthenium complexes Journal of Optics A: Pure and Applied Optics (Special Issue on Optics of Nanocomposite Materials), 11, 024005 (26pp), (2009)[2] K. Iliopoulos, R. Czaplicki, H. El Ouazzani, J. Y. Balandier, M. Chas, S. Goeb, M. Salle, D. Gindre, B. Sahraoui,, Physical origin of the third order nonlinear optical response of orthogonal pyrrolo-tetrathiafulvalene derivatives, APL 97 101104 2010
机译:π共轭有机金属配合物及其衍生物的非线性光学性质由于其扩展的π系统和强的给电子特性而引起了人们的关注[1]。非线性光学响应的​​知识以及电荷转移对非线性的影响非常重要。这样的系统可以用于各种应用中,特别是用于分子非线性光学应用中。在这一贡献中,还将展示自组装分子角的非线性光学响应,因为这类分子系统可以通过外部刺激来控制,特别是对于超纳米光子学应用(如光学计算,光学开关),使用超快光非常重要,因为它们可以用作更复杂的分子系统的基础。亚分​​子组分,如轮烷,连环烷可能是非线性光学应用的合适且有希望的候选物[2]。在本演讲中,还将讨论通过与Pd(II)或Pt(II)盐进行金属辅助组装可自组织为正交二聚体的正交四硫富瓦烯基砖的非线性光学响应。将对非线性光学响应进行比较研究。[1] Sahraoui,J.Luc,A.Meghea,R.Czaplicki,J.-L。 Fillaut和A. Migalska-Zalas炔基-钌配合物中的非线性光学和表面起伏光栅光学杂志A:纯粹和应用光学(纳米复合材料光学问题),11,024005(26pp),(2009)[2] K. Iliopoulos,R。Czaplicki,H。El Ouazzani,JY Balandier,M。Chas,S。Goeb,M。Salle,D。Gindre,B。Sahraoui ,,正交吡咯-的三阶非线性光学响应的​​物理起源四硫富瓦烯衍生物,APL 97 101104 2010

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    B. Sahraoui;

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  • 年度 2011
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