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1.
紫外线(Ultra Violet, UV)固化喷墨打印技术将打印技术与UV固化系统结合,集成了喷墨打印技术无接触、操作简单、低成本及UV固化后无溶剂残留、环保的特点,广泛应用于印制电路板中阻焊层的制备,陶瓷材料、盲文及电子器件的制备,纺织品制造,木材表面的修饰或保护等领域。UV固化喷墨打印墨水是该技术的关键原料,它主要由UV单体、UV预聚物、光引发剂、添加剂及助剂等组成,并根据不同应用要求添加功能材料,如金属、金属氧化物、碳纳米材料或量子点等。UV固化喷墨打印技术用于阻焊层制备时的关键在于墨水固化后形成的涂层与基材粘附力的调控,涂层与基材结合既要保证阻焊的效果,又要在阻焊后易于分离并去除。了解UV固化喷墨打印技术在应用中的各种关键因素及对策,对于其进一步推广应用具有重要意义。  相似文献   

2.
印刷有机电子技术是基于印刷原理的有机电子器件制造技术,是指将有机电子材料配制成功能性油墨,用印刷方式来制造电子器件与系统的方法,其发展涉及到材料化学、微电子学等多个学科方面的知识。其独特的制造方式和器件形态具有柔性、低成本、大面积制造等优势,并且与传统硅基电子器件在应用场合上形成了互补,在生物传感、电子皮肤、柔性显示等领域展示出优势。为了及时跟进这一快速发展的领域,对领域的发展有宏观的把握,本文从印刷技术和电路系统的角度进行了全面概述,介绍了喷墨打印、丝网印刷和转印印刷等印刷技术和基于印刷技术制备的有机数字电路(反相器、与非门、环形振荡器、D触发器),以及实现功能化的印刷电子应用(RFID、电子皮肤、OLED显示驱动背板等);最后,对本领域目前存在的问题和未来发展方向做了简要探讨。  相似文献   

3.
王旭辉  吴建政  何莉 《色谱》2000,18(4):378-378
 色谱数据处理机专用喷墨打印头是一种高值易耗品。针对这一问题 ,介绍了一种喷墨打印头灌装技术 ,以便大家在工作中采用 ,节约分析费用。  相似文献   

4.
喷墨打印高精度图案研究进展   总被引:5,自引:0,他引:5  
邝旻旻  王京霞  王利彬  宋延林 《化学学报》2012,70(18):1889-1896
近年来, 功能材料的图案化及其在高性能光电器件的应用研究受到了广泛关注. 与传统图案化方法相比, 喷墨打印技术更容易实现大面积复杂图案的直接书写和复合功能材料的图案化, 且制备简便, 成本低廉, 使其成为最受关注的图案化方法之一. 综述了近年来喷墨打印制备高精度图案的研究进展. 包括通过优化墨滴的化学组成、调控基材的化学或物理结构以及改进喷墨设备等方法以提高喷墨打印分辨率; 以及通过控制液滴内部的毛细流动和三相接触线的移动抑制喷墨液滴的“咖啡环”效应, 以实现均质打印. 文章最后展望了喷墨打印制备高精度图案的研究发展方向. 这些工作对于实现高性能器件的制备具有重要意义.  相似文献   

5.
随着柔性电子产品的应用日渐广泛,采用喷墨打印技术制备大面积柔性电子产品的技术引起了人们的关注。石墨烯由于具有优异的光学和机械性能,成为制备透明导电薄膜的理想材料。石墨烯可以通过物理或化学方法制备得到。而喷墨打印技术因具有成本低廉、操作简单等优点成为制备大面积柔性电子产品的方法之一。本文首先对石墨烯的性质和制备方法进行了简述,然后分别阐述了喷墨打印墨水条件和喷墨打印图案化控制,最后总结了透明导电薄膜的应用进展以及发展趋势。  相似文献   

6.
张奇  项徽清  刘建国  曾晓雁 《化学进展》2019,31(10):1417-1424
作为有源电子器件的基本构筑元件,薄膜晶体管(Thin-film transistor, TFT)近年来受到深入研究并在高性能材料研发和器件多功能应用等方面取得了长足的进展。喷墨打印作为一种新兴的加成法制备技术,因其具有成本低、环境友好、无需掩膜等优点,在电子功能器件制备等领域受到了广泛关注。本文概述了可用于喷墨打印制备TFT的材料体系,并依照材料的种类和功能,分别较详细地介绍了喷墨打印制备TFT所用的半导体材料、绝缘材料和电极材料,深入分析了不同材料对TFT器件性能的影响,并对喷墨打印制备TFT的材料体系进行了展望,为制备高性能的TFT提供了可能的材料方向。  相似文献   

7.
喷墨打印技术制备聚合物太阳能电池的研究进展   总被引:2,自引:0,他引:2  
聚合物太阳能电池具有成本低、质量轻、容易制备大尺寸器件等优势,是太阳能电池研究中最为活跃的领域之一。喷墨打印技术作为新的成膜技术,具有材料利用率高、快速、可柔性加工等优点,已被用于聚合物太阳能电池的制备,发展潜力巨大。综述了聚合物太阳能电池、喷墨打印技术和喷墨打印技术制备聚合物太阳能电池的研究进展,同时对聚合物太阳能电...  相似文献   

8.
数字化谱的智能化处理   总被引:1,自引:0,他引:1  
沈兰荪  白梅 《分析化学》1994,22(3):237-240
与传统的单变量分析方法不同,本文引入数字化谱的概念,采用多变量分析技术,充分利用学谱数据中所包含的信息,探索一条新的解决ICP-AES中光谱干扰的途径。文中给出了有关的实验数据。  相似文献   

9.
柔性传感器因其在弯折、扭曲、拉伸等大变形条件下具有稳定的传感性能,所以在软体机器人、可穿戴电子和生物医疗等领域具有潜在的应用前景,受到了国内外研究者的广泛关注。与传统光刻技术相比,印刷技术制造作为增材制造,具有绿色、低成本和可大面积制造的优势,被广泛应用于柔性电子器件制备。其中,电流体动力喷墨打印(电喷印)技术因其具有多种功能材料的兼容性,被认为最有可能替代传统的光刻技术,实现柔性传感器高分辨率和跨规模制造。近年来,电喷印技术在微型化柔性传感器制造领域显示出广泛的应用潜力。本综述重点介绍了电喷印刷柔性传感器的工艺、材料和应用的最新研究进展。首先,详细介绍了电流体动力喷墨打印技术的工作原理,总结了用于电喷印的各种功能性墨水材料,然后,介绍了电喷印刷中墨水和柔性基底间表界面调控的问题。随后,综述了电喷印方法在柔性压力传感器、柔性气体传感器和柔性电化学传感器等柔性传感器制造的应用进展。最后,总结讨论了下一代电喷印刷技术在柔性传感器领域的机遇与挑战。  相似文献   

10.
喷墨打印技术由于在图案化加工方面的高效、低成本、非接触形式及柔性的加工过程等特点而被应用于有机电子器件的加工中.通过打印功能性高分子溶液,喷墨打印实现了功能高分子薄膜的沉积和图案化,并实现了有机发光二极管、有机薄膜晶体管及其集成器件的加工.对喷墨打印在有机电子器件加工中取得的成果进行了总结,同时综述了高分子溶液喷墨打印过程中存在的基本科学问题和研究现状.  相似文献   

11.
Inkjet printed (bio)chemical sensing devices   总被引:2,自引:0,他引:2  
Inkjet printing has evolved from an office printing application to become an important tool in industrial mass fabrication. In parallel, this technology is increasingly used in research laboratories around the world for the fabrication of entire (bio)chemical sensing devices or single functional elements of such devices. Regularly stated characteristics of inkjet printing making it attractive to replace an alternative material deposition method are low cost, simplicity, high resolution, speed, reproducibility, flexibility, non-contact, and low amount of waste generated. With this review, we give an overview over areas of (bio)chemical sensing device development profiting from inkjet printing applications. A variety of printable functional sensor elements are introduced by examples, and the advantages and challenges of the inkjet method are pointed out. It is demonstrated that inkjet printing is already a routine tool for the fabrication of some (bio)chemical sensing devices, but also that novel applications are being continuously developed. Finally, some inherent limitations of the method and challenges for the further exploitation of this technology are pointed out.  相似文献   

12.
Recent advances in the development of stable dispersions of nanophase metal particles have allowed the direct fabrication of metal patterns (e.g., printed circuits, RFID tags, touch screens, etc.) by simple additive type inkjet processes. Such processes replace the more costly and less environmentally friendly subtractive lithographic type photoprocesses involving selective etching of photoresists and metal layers and more complex additive type process using photocatalysts for patterned metal deposition by electroless plating processes and inkjet patterning of metal catalyst or catalyst precursor for subsequent metallization by electroless plating. The recent development of electrohydrodynamic jet printing (e-jet printing), in which the ink drop is ejected under the influence of an electric field, has allowed a significant resolution increase vs. conventional inkjet printing with a piezoelectric head (printing resolution of ca. 100 nm for e-jet printing vs. ca. 20 μm for inkjet printing).  相似文献   

13.
Rapid, precise, and reproducible deposition of a broad variety of functional materials, including analytical assay reagents and biomolecules, has made inkjet printing an effective tool for the fabrication of microanalytical devices. A ubiquitous office device as simple as a standard desktop printer with its multiple ink cartridges can be used for this purpose. This Review discusses the combination of inkjet printing technology with paper as a printing substrate for the fabrication of microfluidic paper‐based analytical devices (μPADs), which have developed into a fast‐growing new field in analytical chemistry. After introducing the fundamentals of μPADs and inkjet printing, it touches on topics such as the microfluidic patterning of paper, tailored arrangement of materials, and functionalities achievable exclusively by the inkjet deposition of analytical assay components, before concluding with an outlook on future perspectives.  相似文献   

14.
采用空心莲子草对印染废水进行修复,研究净化效果,并利用在线监测技术对植物修复前后的印染废水中氨氮、COD、TOC指标进行测定。结果表明:在线监测技术成熟,植物修复印染废水可行。  相似文献   

15.
The successful inkjet printing of a cerium gadolinium oxide (Ce0.8Gd0.2O2) precursor solution on highly textured Ni-5%W is reported. A stable ink was synthesised from metal acetates and propionic acid with rheological properties suitable for inkjet printing and also the development of solid–liquid interface comparable with thin film formation by dip coating. Two different drop-on-demand print heads were used for deposition: a 16-nozzle piezoelectric cartridge and a single electromagnetic nozzle. Two different rastering patterns with different droplet sizes and spacing were compared. Thermogravimetry and X-ray diffractometry were used to study the thermal decomposition of the metal oxide precursors and to determine the shortest possible heat treatment of the deposited layers, potentially suitable for continuous large scale production. The results from X-ray diffraction show that the single phase Ce0.8Gd0.2O2 was obtained in all cases, but only piezoelectric inkjet printing with optimised drop overlapping produces a highly textured buffer layer. Optical micrographs and atomic force microscopy also indicate the good quality of deposited films after heat treatment.  相似文献   

16.
本文简要介绍了几类纳米粒子的制备及其在打印印刷领域的应用.包括无机纳米粒子复合材料用于绿色打印制版、聚合物乳胶纳米粒子用于喷墨打印制备光子晶体、金属纳米粒子用于印刷电路以及纳米材料用于3D打印,并展望了其发展前景.  相似文献   

17.
There is growing interest in developing printable paper sensors to enable rapid testing of analytes for environmental, food safety, and clinical applications. A major challenge is to find suitable bioinks that are amenable to high‐speed printing and remain functional after printing. We report on a simple and effective approach wherein an aqueous ink composed of megadalton‐sized tandem repeating structure‐switching DNA aptamers (concatemeric aptamers) is used to rapidly create patterned paper sensors on filter paper by inkjet printing. These concatemeric aptamer reporters remain immobilized at the point of printing through strong adsorption but retain sufficient segmental mobility to undergo structure switching and fluorescence signaling to provide both qualitative and quantitative detection of small molecules and protein targets. The convenience of inkjet printing allows for the patterning of internally referenced sensors with multiplexed detection, and provides a generic platform for on‐demand printing of sensors even in remote locations.  相似文献   

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