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首页> 外文期刊>RSC Advances >Synthesis and characterization of novel azobenzene-based mesogens and their organization at the air-water and air-solid interfaces
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Synthesis and characterization of novel azobenzene-based mesogens and their organization at the air-water and air-solid interfaces

机译:新型偶氮苯基介晶的合成,表征及其在空气-水和气固界面上的组织

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摘要

Eight new oligomeric mesogens are reported, consisting of an azobenzene-based core attached to which are four 4-cyanobiphenyl units via flexible alkyl spacers (n = 5-12). Their chemical structures were determined by H-1 NMR, C-13 NMR, IR, UV-Vis and Raman spectroscopy, and elemental analysis. The thermotropic liquid crystalline properties of these materials were investigated by POM, DSC and XRD. The oligomers containing n = 8 and n = 10 were found to exhibit a monotropic nematic (N) phase while others were non-mesomorphic. Langmuir monolayers and Langmuir-Blodgett films of the nematic compounds (n = 10) were studied at the air-water interface (Langmuir film) and the air-solid interface. Surface manometry studies on the Langmuir monolayer showed that the film had nearly zero surface pressure at a large area per molecule (A(m) >= 0.55 nm(2)). The film on compression showed a gradual increase in surface pressure and finally collapsed at an A(m) of about 0.15 nm(2) with a collapse pressure of about 60 mN m(-1). Brewster angle microscopy (BAM) images (during compression) showed that dark regions coexisting with grey spots in large areas transformed to a uniform grey region with an increase in surface density and finally collapsed exhibiting bright regions. Atomic force microscopy studies (AFM) on the LB films, transferred onto freshly cleaved hydrophilic mica substrates, exhibited a network of thin fibers with the height of fibers varying between similar to 4 nm to 80 nm which could be due to pi-pi stacking and dipolar interactions associated with the cyanobiphenyl units. On a hydrophobic silicon substrate, the LB transfer yielded a multilayer film which dewetted to form nanodroplets. We carried out temperature dependent AFM studies of the nematic compounds which showed the reversible formation of aligned fibers (similar to 20 to 40 mm) in the mesophase. In brief, our study provides new approaches for the realization of controlling the anisotropic properties of an ordered phase.
机译:据报道,有八种新的低聚介晶,由一个偶氮苯基核心组成,该核心通过柔性烷基间隔基(n = 5-12)与四个4-氰基联苯单元相连。它们的化学结构由H-1 NMR,C-13 NMR,IR,UV-Vis和拉曼光谱以及元素分析确定。通过POM,DSC和XRD研究了这些材料的热致液晶性能。发现含有n = 8和n = 10的低聚物表现出单向性向列(N)相,而其他则是非同晶的。在空气-水界面(Langmuir膜)和气固界面处研究了向列型化合物(n = 10)的Langmuir单层膜和Langmuir-Blodgett膜。对Langmuir单层膜的表面测压研究表明,该膜在每个分子的大面积上具有接近零的表面压力(A(m)> = 0.55 nm(2))。压缩后的膜显示出表面压力的逐渐增加,并最终以约0.15 nm(2)的A(m)塌陷,塌陷压力约为60 mN m(-1)。布鲁斯特角显微镜(BAM)图像(在压缩过程中)显示,大区域中与暗点共存的暗区随着表面密度的增加转化为均匀的灰色区,并最终塌陷,呈现出亮区。在LB膜上进行的原子力显微镜研究(AFM),转移到新鲜裂解的亲水性云母基质上,显示出细纤维网络,纤维高度在大约4 nm至80 nm之间变化,这可能是由于pi-pi堆积和与氰基联苯单元相关的偶极相互作用。在疏水硅基底上,LB转移产生了多层膜,该膜被润湿以形成纳米液滴。我们对向列化合物进行了温度依赖性AFM研究,结果表明在中间相中可逆排列的排列纤维(类似于20至40 mm)可逆形成。简而言之,我们的研究为控制有序相的各向异性特性提供了新的方法。

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