Oluwole David O, Yagodin Alexey V, Mkhize Nhlakanipho C, Sekhosana Kutloano E, Martynov Alexander G, Gorbunova Yulia G, Tsivadze Aslan Yu, Nyokong Tebello
Department of Chemistry, Rhodes University, Grahamstown, 6140, South Africa.
A. N. Frumkin Institute of Physical Chemistry and Electrochemistry, Russian Academy of Sciences, Leninskii pr., 31, bldg. 4, Moscow, 119071, Russia.
Chemistry. 2017 Feb 24;23(12):2820-2830. doi: 10.1002/chem.201604401. Epub 2017 Jan 31.
We report original, selective, and efficient approaches to novel nonlinear optical (NLO) materials, namely homoleptic double- and triple-decker europium(III) complexes 2 and 3 with the A B-type phthalocyanine ligand (2,3-bis[2'-(2''-hydroxyethoxy)ethoxy]-9,10,16,17,23,24-hexa-n-butoxyphthalocyanine 1) bearing two anchoring diethyleneglycol chains terminated with OH groups. Their covalently linked nanoconjugates with mercaptosuccinic acid-capped ternary CdSeTe/CdTeS/ZnSeS quantum dots are prepared in the presence of an ethyl(dimethylaminopropyl)carbodiimide activating agent. Optical limiting (OL) properties of the obtained low-symmetry complexes and their conjugates with quantum dots (QDs) are measured for the first time by the open-aperture Z-scan technique (532 nm laser and pulse rate of 10 ns). For comparison, symmetrical double- and triple-decker Eu octa-n-butoxyphthalocyaninates 5 and 6 and their mixtures with trioctylphosphine oxide-capped QDs are also synthesized and studied. It is revealed that both lowering of molecular symmetry and expansion of the π-electron system upon moving from double- to triple-decker complexes significantly improves the OL characteristics, making the low-symmetry triple-decker complex 3 the most efficient optical limiter in the studied family of sandwich complexes, affording 50 % lowering of light transmittance below 0.5 J cm input fluence. Conjugation (both covalent and noncovalent) with QDs affords further enhancement of the OL properties of both double- and triple-decker complexes. Altogether, the obtained results contribute to the development of novel nonlinear optical materials for future nanoelectronic and optical device applications.
我们报道了制备新型非线性光学(NLO)材料的原创、选择性且高效的方法,即具有AB型酞菁配体(2,3-双[2'-(2''-羟基乙氧基)乙氧基]-9,10,16,17,23,24-六正丁氧基酞菁1)的同配体双层和三层铕(III)配合物2和3,该配体带有两条以OH基团为末端的锚定二甘醇链。在乙基(二甲基氨基丙基)碳二亚胺活化剂存在下,制备了它们与巯基琥珀酸封端的三元CdSeTe/CdTeS/ZnSeS量子点的共价连接纳米共轭物。通过开孔Z扫描技术(532 nm激光,脉冲速率10 ns)首次测量了所得低对称性配合物及其与量子点(QD)共轭物的光限幅(OL)特性。为作比较,还合成并研究了对称的双层和三层正丁氧基铕酞菁5和6及其与三辛基氧化膦封端的量子点的混合物。结果表明,从双层配合物转变为三层配合物时,分子对称性的降低和π电子体系的扩展均显著改善了光限幅特性,使低对称性三层配合物3成为所研究的夹心配合物家族中最有效的光限幅器,在0.5 J cm输入能量密度下光透射率降低50%。与量子点的共轭(共价和非共价)均进一步增强了双层和三层配合物的光限幅特性。总之,所得结果有助于开发用于未来纳米电子和光学器件应用的新型非线性光学材料。