Fabrication of Polythiophene Patterns through Blending of a Thermally Curable Polythiophene with Pol

来源 :Chinese Journal of Polymer Science | 被引量 : 0次 | 上传用户:uilyz
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
In this study, we demonstrate a novel method for fabricating polythiophene patterns, i.e., cylindrical holes and cylinders, through blending of a thermally curable polythiophene carrying with tertiary ester groups(PT-tert-ESTER) and poly(methyl methacrylate)(PMMA), followed by thermal conversion of the PT-tert-ESTER to an insoluble polythiophene via low-temperature cleavage of the tertiary ester groups and removal of the PMMA component via ultraviolet degradation. We show that the surface polarity of substrates, the mass ratio of PT-tert-ESTER to PMMA in the blend solutions as well as the concentration of the blend solutions strongly influence the formation of the polythiophene patterns. Cylindrical holes are more readily formed on less polar substrates when a PT-tert-ESTER dominated blend solution is used, while cylinders are more readily formed on more polar substrates when a PMMA dominated blend solution is used. Moreover, the diameters of both the cylindrical holes and the cylinders decrease as the PT-tert-ESTER concentration is increased in the respective ranges of the PT-tert-ESTER/PMMA ratios where the patterns are formed. Grazing incident X-ray diffraction data have indicated that the patterning of the PT-tert-ESTER component in the blend films improves the crystallinity of PT-tert-ESTER as well as the molecular packing of the insoluble polythiophene in the resultant patterned polythiophene films. In this study, we demonstrate a novel method for fabricating polythiophene patterns, ie, cylindrical holes and cylinders, through blending of a thermally curable polythiophene carrying with tertiary ester groups (PT-tert-ESTER) and poly (methyl methacrylate) (PMMA) followed by thermal conversion of the PT-tert-ESTER to an insoluble polythiophene via low-temperature cleavage of the tertiary ester groups and removal of the PMMA component via ultraviolet degradation. We show that the surface polarity of substrates, the mass ratio of PT- tert-ESTER to PMMA in the blend solutions as well as the concentration of the blend solutions strongly influence the formation of the polythiophene patterns. Cylindrical holes are more preponderant on less polar substrates when a PT-tert-ESTER dominated blend solution is used, while cylinders are more preformed on more polar substrates when a PMMA dominated blend solution is used. Moreover, the diameters of both cylindrical lobes and the cylinder The decrease in the PT-tert-ESTER concentration is increased in the respective ranges of the PT-tert-ESTER / PMMA ratios where the patterns are formed. Grazing incident X-ray diffraction data have indicated that the patterning of the PT- ESTER component in the blend films improves the crystallinity of PT-tert-ESTER as well as the molecular packing of the insoluble polythiophene in the resultant patterned polythiophene films.
其他文献
用1亿元所打造的武汉大学万林艺术博物馆工程,在2013年11月29日武汉大学120周年校庆之际,作为厚礼献给这所全国著名的高等学府。中建商砼武昌站作为该工程唯一的混凝土供应站
利用液相离子交换法制备了CuY分子筛,并用X射线光电子能谱分析(XPS)对Cu元素进行了价态表征,用原位傅里叶转换红外(in-situ FTIR)和氨气程序升温脱附(NH_3-TPD)技术对其进行
“中国的SUV市场演绎着快意恩仇,对于那些外资、合资品牌车企来说,有技术有历史,借助于品牌的优势,每每投放一款SUV车型,往往可以载誉而归。但品牌影响力对于自主品牌来说,目
1.问题及其解答(2012年江苏高考物理选择题第四题)【问题】将一只皮球竖直向上抛出,皮球运动时受到空气阻力的大小与速度的大小成正比.下列描绘皮球在上升过程中加速度大小a
一、基础知识1.作者情况江奈夫·斯威夫特(1667—1745),18世纪初期英国最优秀的讽刺作家和政论家,以讽刺作品名垂青史,代表作为《格列佛游记》《一桶油的故事》等。他出生于
提及《四库全书》,人们都会想到清乾隆帝爱新觉罗·弘历,因为这部巨型文化丛书是他一手策划并最后定稿的。那么乾隆为什么要编修《四库全书》?这与天一阁又有怎样的关联呢?清
在我国,行内人士都知道再制造的概念刚引出不久,再制造产业刚刚起步,如果用这一点去解释我国再制造产业当前处于缓慢发展的状态,确实能够让人信服,但是这样的解释过于空泛。我国再制造产业现阶段面临的难题众多,技术难题、旧件来源难题、管理体系的难题等,这让很多再制造企业无所适从。尤其是旧件来源严重缺乏的问题,使企业再制造业务举步维艰。  如何解决旧件来源等众多难题,很多再制造企业都在思考。如果有一个物流系统
我们致力于为光伏产业提供高效、系统的综合解决方案。多年来,依靠公司雄厚的研发实力在绿色能源领域内已积累了丰富的经验,台达提供的太阳能光伏系统屋顶方案,可根据用户需
采用密度泛函理论对化学计量比钼氧簇阳离子(MoO_3)_n~+(n=1~4)的结构和反应性进行理论研究.计算结果表明,化学计量比钼氧簇阳离子(MoO_3)_n~+(n=1~4)的基态结构均为二重态,
目的探讨胰高血糖素样肽-2(glucagon like peptide-2,GLP-2)对脓毒症大鼠肠道细菌移位的影响。方法Sprague Dawley大鼠60只,随机分为3组,A组:对照组,B组:内毒素组,C组:治疗组