Abellán Gonzalo, Jordá Jose Luis, Atienzar Pedro, Varela María, Jaafar Miriam, Gómez-Herrero Julio, Zamora Félix, Ribera Antonio, García Hermenegildo, Coronado Eugenio
Instituto de Ciencia Molecular , Universidad de Valencia , Catedrático José Beltrán 2, Paterna , 46980 , Valencia , Spain . Email:
Instituto de Tecnología Química (UPV-CSIC) , Universidad Politécnica de Valencia - Consejo Superior de Investigaciones Científicas , Avenida de los Naranjos s/n , 46022 , Valencia , Spain . Email:
Chem Sci. 2015 Mar 1;6(3):1949-1958. doi: 10.1039/c4sc03460k. Epub 2014 Dec 4.
A hybrid magnetic multilayer material of micrometric size, with highly crystalline hexagonal crystals consisting of CoAl-LDH ferromagnetic layers intercalated with thermoresponsive 4-(4-anilinophenylazo)benzenesulfonate (AO5) molecules diluted (ratio 9 : 1) with a flexible sodium dodecylsulphate (SDS) surfactant has been obtained. The resulting material exhibits thermochromism attributable to the isomerization between the azo (prevalent at room temperature) and the hydrazone (favoured at higher temperatures) tautomers, leading to a thermomechanical response. In fact, these crystals exhibited thermally induced motion triggering remarkable changes in the crystal morphology and volume. variable temperature XRD of these thin hybrids shows that the reversible change into the two tautomers is reflected in a shift of the position of the diffraction peaks at high temperatures towards lower interlayer spacing for the hydrazone form, as well as a broadening of the peaks reflecting lower crystallinity and ordering due to non-uniform spacing between the layers. These structural variations between room temperature (basal spacing (BS) = 25.91 Å) and 100 °C (BS = 25.05 Å) are also reflected in the magnetic properties of the layered double hydroxide (LDH) due to the variation of the magnetic coupling between the layers. Overall, our study constitutes one of the few examples showing fully reversible thermo-responsive breathing in a 2D hybrid material. In addition, the magnetic response of the hybrid can be modulated due to the thermotropism of the organic component that, by influencing the distance and in-plane correlation of the inorganic LDH, modulates the magnetism of the CoAl-LDH sheets in a certain range.
已制备出一种微米级的混合磁性多层材料,其具有高度结晶的六方晶体,由插层有热响应性4-(4-苯胺基苯基偶氮)苯磺酸盐(AO5)分子的CoAl-LDH铁磁层组成,这些分子用柔性十二烷基硫酸钠(SDS)表面活性剂稀释(比例为9:1)。所得材料表现出热致变色现象,这归因于偶氮(在室温下占主导)和腙(在较高温度下更有利)互变异构体之间的异构化,从而导致热机械响应。事实上,这些晶体表现出热诱导运动,引发了晶体形态和体积的显著变化。这些薄混合材料的变温XRD表明,向两种互变异构体的可逆转变反映在高温下衍射峰位置的移动,对于腙形式,衍射峰向较低的层间距移动,同时峰变宽,这反映了由于层间间距不均匀导致的结晶度和有序度降低。由于层间磁耦合的变化,室温(基面间距(BS)=25.91 Å)和100°C(BS = 25.05 Å)之间的这些结构变化也反映在层状双氢氧化物(LDH)的磁性中。总体而言,我们的研究是少数几个展示二维混合材料中完全可逆热响应呼吸的例子之一。此外,由于有机成分的热致性,混合材料的磁响应可以被调制,通过影响无机LDH的距离和面内相关性,在一定范围内调制CoAl-LDH片的磁性。