具有结合力增强效果的纳米纤维制备及其光电应用[EB/OL]
北京:中国科技论文在线
) 摘要: 尽管纳米光电材料受到越来越多人们的关注,但是由于常用的静电纺丝方法制备的纳米纤维与导电玻璃基底的结合力不好,限制了其大规模合成
关键词: 光电转换; 纳米纤维; ITO; 静电纺丝 Ling Tao
之前相关工作已经证明一种经过两部热处理和胶水处理的工艺制备高密度连续分离ITO导电纤维的方法
同时证明通过溶胶处理及热压处理等方法可以实现其光电转换效率的提升
) Abstract: Whereas considerable attentions have been attracted in solar device application, the poor adhesion of electrospinning nanofibers towards the conductive glass substrate has limited the scale-up and practical application
Previously, we have demonstrated a new treatment method to fabricate highly dense, continuous and split-free ITO nanofiber networks with reinforced adhesion to substrate through two-step calcinations and temporary "glue" treatment
Here we reveal the origin of TCG treatment on achieving good adhesion and maintaining fibrous morphology
We show that nanofiber networks treated with this method achieve advantageous photovoltaic conversion efficiency over those treated with traditional gel solution and hot pressing methods
Such treatment strategy of fabrication nanofiber networks with enhanced adhesion to the conductive substrate also represents a simple and scalable route for application of electrospinning nanofibers in sensors and electronic devices
Keywords: Photovoltaic; Nanofibers; ITO; Electrospinning 下载PDF阅读器 PDF全文下载: 初稿 ( 151 ) 作者简介: Ling Tao(1981-), female, lecture title, research in quantum dots solar cells 通信联系人: Du Xiwen(1970-),male, professor title, research in quantum dots materials 【收录情况】 中国科技论文在线: 凌涛
这种制备具有良好结合力的导电纤维的工艺同样在未来适用于制备其他传感器或电子器件
杜希文 * ( 天津大学材料学院,天津市,邮编:300072
总览 评价 凌涛
这里要揭示一下TCG处理得到良好形貌的根本原因
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