Davis Frank, Hodge Philip, Tredgold Richard H, Ali-Adib Ziad
Institute of Bioscience and Technology, Cranfield University at Silsoe, Silsoe MK45 4DT, United Kingdom.
Langmuir. 2005 Sep 27;21(20):9199-205. doi: 10.1021/la051011e.
Polymers containing liquid crystal groups have been studied previously as waveguides, and they have been deposited as spacer materials with various chromophores to form alternating films However, only a few members of this group of materials have been studied in any detail, and very little structural information has been obtained so far. Therefore, a more detailed examination of these materials as mono- and multilayers was undertaken. A new group of materials including the same mesogenic group, polymeric sulfones, was also studied. The polymers gave steep isotherms with high collapse pressures, indicating good packing of the monolayers, and could be deposited to form thick multilayers. X-ray diffraction showed that an ordered multilayer was formed, and the effects of the polymers chemical nature on the structure of the LB films are discussed. It appears that the dominant factor in monolayer structure is the nature of the polymer backbone rather than that of the liquid crystal side chains, which play a secondary role.
含液晶基团的聚合物此前已作为波导进行了研究,并且它们已作为间隔材料与各种发色团一起沉积以形成交替膜。然而,这组材料中只有少数成员得到了详细研究,到目前为止获得的结构信息非常少。因此,对这些材料作为单层和多层进行了更详细的研究。还研究了一组包括相同介晶基团的新型材料——聚砜。这些聚合物给出了具有高崩塌压力的陡峭等温线,表明单层排列良好,并且可以沉积形成厚的多层膜。X射线衍射表明形成了有序的多层膜,并讨论了聚合物化学性质对LB膜结构的影响。似乎单层结构中的主导因素是聚合物主链的性质,而不是起次要作用的液晶侧链的性质。