首页> 外文OA文献 >Photonic and Opto-Electronic Applications of Polydiacetylene Films Photodeposited from Solution and Polydiacetylene Copolymer Networks
【2h】

Photonic and Opto-Electronic Applications of Polydiacetylene Films Photodeposited from Solution and Polydiacetylene Copolymer Networks

机译:溶液和聚二乙炔共聚物网络中光沉积的聚二乙炔薄膜的光子和光电应用

摘要

Polydiacetylenes (PDAS) are attractive materials for both electronic and photonic applications because of their highly conjugated electronic structures. They have been investigated for applications as both one-dimensional (linear chain) conductors and nonlinear optical (NLO) materials. One of the chief limitations to the use of PDAs has been the inability to readily process them into useful forms such as films and fibers. In our laboratory we have developed a novel process for obtaining amorphous films of a PDA derived from 2-methyl4-nitroaniline using photodeposition with Ultraviolet (UV) light from monomer solutions onto transparent substrates. Photodeposition from solution provides a simple technique for obtaining PDA films in any desired pattern with good optical quality. This technique has been used to produce PDA films that show potential for optical applications such as holographic memory storage and optical limiting, as well as third-order NLO applications such as all-optical refractive index modulation, phase modulation and switching. Additionally, copolymerization of diacetylenes with other monomers such as methacrylates provides a means to obtain materials with good processibility. Such copolymers can be spin cast to form films, or drawn by either melt or solution extrusion into fibers. These films or fibers can then be irradiated with UV to photopolymerize the diacetylene units to form a highly stable cross-linked PDA-copolymer network. If such films are electrically poled while being irradiated, they can achieve the asymmetry necessary for second-order NLO applications such as electro-optic switching. On Earth, formation of PDAs by the above mentioned techniques suffers from defects and inhomogeneities caused by convective flows that can arise during processing. By studying the formation of these materials in the reduced-convection, diffusion-controlled environment of space we hope to better understand the factors that affect their processing, and thereby, their nature and properties. Ultimately it may even be feasible to conduct space processing of PDAs for technological applications.
机译:聚二乙炔(PDAS)具有高度共轭的电子结构,因此在电子和光子应用中都是有吸引力的材料。已经研究了它们在作为一维(线性链)导体和非线性光学(NLO)材料中的应用。使用PDA的主要限制之一是无法轻易将它们加工成有用的形式,例如薄膜和纤维。在我们的实验室中,我们开发了一种新颖的方法,该方法是使用紫外(UV)光将单体溶液中的PDA溶液从透明胶片上沉积到2-甲基4-硝基苯胺上而获得的PDA非晶膜。从溶液中进行光沉积可提供一种简单的技术,以任何所需的图案获得具有良好光学质量的PDA膜。此技术已用于生产PDA膜,该膜显示出潜力,可用于光学应用,例如全息存储器存储和光学限制,以及三阶NLO应用,例如全光学折射率调制,相位调制和切换。另外,二乙炔与其他单体例如甲基丙烯酸酯的共聚提供了获得具有良好可加工性的材料的手段。可以将此类共聚物旋铸以形成膜,或通过熔融或溶液挤出将其拉伸成纤维。然后可以用紫外线照射这些薄膜或纤维,以使二乙炔单元发生光聚合,从而形成高度稳定的交联PDA共聚物网络。如果在辐照时将此类膜电极化,则它们可以实现二阶NLO应用(例如电光切换)所需的不对称性。在地球上,通过上述技术形成的PDA受到在处理期间可能产生的对流影响的缺陷和不均匀性的困扰。通过研究在减少对流,扩散受控的空间环境中这些材料的形成,我们希望更好地了解影响它们加工的因素,进而影响它们的性质和特性。最终,为技术应用对PDA进行空间处理甚至是可行的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号