Institut de Chimie Moléculaire de l'Université de Bourgogne, CNRS UMR 5260, University of Bourgogne, 21078 Dijon, France.
Phys Chem Chem Phys. 2010 Oct 21;12(39):12851-61. doi: 10.1039/c0cp00381f. Epub 2010 Aug 27.
Solution processed thin films of an amphiphilic tris(phthalocyaninato) rare earth triple-decker complex, Eu(2)Pc(15C5)(4)[Pc(OC(10)H(21))(8)], have been prepared from three different methods: self-assembly (SA) annealed in solvent vapor, quasi-Langmuir-Shäfer (QLS) and drop casting methods. In particular, we successfully developed a simple QLS process for fabricating ordered multilayers with a good thickness control. The films prepared from three different methods were characterized by a wide range of methods including electronic absorption spectra, IR, X-ray diffraction, atomic force microscopy (AFM), and current-voltage (I-V) measurements. J-type aggregates have been formed with the increasing degree of order of molecular stacking Cast < QLS < SA films. Moreover, the gas sensing behavior of the three types of films was investigated towards ozone in the 8-300 ppb range. Unexpectedly good sensitive, stable and reproducible responses to O(3) gas are obtained for these kinds of ultra-thin solution processed films in a fast response/recovery cycle of only 1/4 min. The response of Eu(2)Pc(15C5)(4)[Pc(OC(10)H(21))(8)] films is linearly correlated to the ozone concentration. The interaction between the Eu(2)Pc(15C5)(4)[Pc(OC(10)H(21))(8)] films and different ozone concentrations was found to follow first-order kinetics. Strikingly, QLS films showed the most stable response and the largest average sensor response rate constant among the three types of films.
两亲性三(酞菁基)稀土三层夹心配合物 Eu(2)Pc(15C5)(4)[Pc(OC(10)H(21))(8)]的溶液处理薄膜通过三种不同的方法制备:自组装(SA)在溶剂蒸气中退火、准 Langmuir-Shäfer(QLS)和滴铸方法。特别是,我们成功地开发了一种简单的 QLS 工艺,用于制备具有良好厚度控制的有序多层膜。通过包括电子吸收光谱、IR、X 射线衍射、原子力显微镜(AFM)和电流-电压(I-V)测量在内的多种方法对三种方法制备的薄膜进行了表征。随着分子堆积有序度的增加,形成了 J 型聚集体。Cast < QLS < SA 薄膜。此外,还研究了三种类型的薄膜对 8-300 ppb 范围内臭氧的气体传感行为。令人意外的是,对于这些超薄膜,在仅 1/4 min 的快速响应/恢复循环中,对 O(3)气体具有良好的敏感、稳定和可重复响应。Eu(2)Pc(15C5)(4)[Pc(OC(10)H(21))(8)]薄膜的响应与臭氧浓度呈线性相关。发现 Eu(2)Pc(15C5)(4)[Pc(OC(10)H(21))(8)]薄膜与不同臭氧浓度之间的相互作用遵循一级动力学。引人注目的是,QLS 薄膜在三种类型的薄膜中表现出最稳定的响应和最大的平均传感器响应速率常数。