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用油墨配方软件Ink Formulation5.0调配专色墨实例
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作者 皮阳雪 《印刷质量与标准化》 2014年第3期48-51,共4页
经验配色法常常受到配色者生理、心理因素及其它客观条件的影响,产品质量难以保持稳定,油墨浪费较大,剩余油墨利用率低.另外,依靠经验和感觉配色,只能定性,无法定量,技术的传播与交流比较困难. 电脑配色系统是集测色仪、计算机及配色软... 经验配色法常常受到配色者生理、心理因素及其它客观条件的影响,产品质量难以保持稳定,油墨浪费较大,剩余油墨利用率低.另外,依靠经验和感觉配色,只能定性,无法定量,技术的传播与交流比较困难. 电脑配色系统是集测色仪、计算机及配色软件系统于一体的现代化设备.计算机配色的基本原理是将生产上配色所用油墨的颜色数据,预先储存在电脑中,应用其计算出用这些油墨配得与原稿色相同颜色的混合比例,从而达到实现配方的目的.常用的工具有:打样机或印刷适性仪(图1)、电子天平(图2)、分光光度仪(图3)、标准光源(图4)、配色软件(图5)等. 展开更多
关键词 油墨配方 色差值 软件 ink formulation5.0
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Inkjet-Printed Organic Solar Cells and Perovskite Solar Cells: Progress,Challenges, and Prospect
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作者 Xing-Ze Chen Qun Luo Chang-Qi Ma 《Chinese Journal of Polymer Science》 SCIE EI CAS CSCD 2023年第8期1169-1197,I0005,共30页
In recent years,the power conversion efficiency of organic solar cells(OSCs)and perovskite(PVSCs)has increased to over 19%and25%,respectively.Meanwhile,the long-term stability of OSCs and PVSCs was also significantly ... In recent years,the power conversion efficiency of organic solar cells(OSCs)and perovskite(PVSCs)has increased to over 19%and25%,respectively.Meanwhile,the long-term stability of OSCs and PVSCs was also significantly improved with a better understanding of the degradation mechanism and the improvement of materials,morphology,and interface stability.As both the efficiency and lifetime of solar cells are approaching the commercialization limit,fabrication methods for large-area OSCs and PVSCs that can be directly transferred from lab to fab become essential to promote the industrialization of OSCs and PVSCs.Compared with the coating methods,inkjet printing is a mature industrial technology with the advantages of random digital patterning,excellent precision and fast printing speed,which is considered to have great potential in solar cell fabrication.Many efforts have been devoted to developing inkjet-printed OSCs and PVSCs,and much progress has been achieved in the last few years.In this review,we first introduced the working principle of inkjet printing,the rheology requirements of inks,and the behaviors of the droplets.We then summarized the recent research progresses of the inkjet-printed OSCs and PVSCs to facilitate knowledge transfer between the two technologies.In the end,we gave a perspective on inkjet-printed OSCs and PVSCs. 展开更多
关键词 Organic solar cells Perovskite solar cells inkjet printing ink formulation Morphology control
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Rational design and evaluation of UV curable nano-silver ink applied in highly conductive textile-based electrodes and flexible silver-zinc batteries 被引量:6
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作者 Hong Hong Lihong Jiang +4 位作者 Huating Tu Jiyong Hu Kyoung-Sik Moon Xiong Yan Ching-ping Wong 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第6期294-307,共14页
The possibility of printing conductive ink on textiles is progressively researched due to its potential benefits in manufacturing functional wearable electronics and improving wearing comfort.However,few studies have ... The possibility of printing conductive ink on textiles is progressively researched due to its potential benefits in manufacturing functional wearable electronics and improving wearing comfort.However,few studies have reported the effect of conductive ink formulation on electrodes directly screen-printed on flexible substrates,especially printing UV curable conductive ink on common textiles.In this work,a novel UV curable nano-silver ink with short-time curing and low temperature features was developed to manufacture the fully flexible and washable textile-based electrodes by screen printing.The aim of this study was to determine the influence of ink formulation on UV-curing speed,degree of conversion,morphology and electrical properties of printed electrodes.Besides,the application demonstration was highlighted.The curing speed and adhesion of ink was found depending dominantly on the type of prepolymer and the functionality of monomer,and the type of photoinitiator had a decisive effect on the curing speed,degree of double bond conversion and morphology of printed patterns.The nano-silver content is key to guarantee the suitable screen-printability of conductive ink and therefore the uniformity and high conductivity of textile-based electrodes.Optimally,an ink formulation with 60 wt%nano-silver meets the potential application requirements.The electrode with 1.0 mm width showed significantly high electrical conductivity of 2.47×10^(6)S/m,outstanding mechanical durability and satisfactory washability.The high-performance of electrodes screen-printed on different fabrics proved the feasibility and utility of UV curable nano-silver ink.In addition,the application potential of the conductive ink in fabricating electronic textiles(e-textiles)was confirmed by using the textile-based electrodes as the cathodes of silverzinc batteries.We anticipate the developed UV curable conductive ink for screen-printing on textiles can provide a novel design opportunity for flexible and wearable e-textile applications. 展开更多
关键词 Nano-silver ink formulation UV curing Textile-based electrodes High conductivity Mechanical durability WASHABILITY
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The Controllable Design of Catalyst Inks to Enhance PEMFC Performance:A Review 被引量:4
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作者 Yuqing Guo Fengwen Pan +5 位作者 Wenmiao Chen Zhiqiang Ding Daijun Yang Bing Li Pingwen Ming Cunman Zhang 《Electrochemical Energy Reviews》 SCIE EI 2021年第1期67-100,共34页
Typical catalyst inks in proton exchange membrane fuel cells(PEMFCs)are composed of a catalyst,its support,an ionomer and a solvent and are used with solution processing approaches to manufacture conventional catalyst... Typical catalyst inks in proton exchange membrane fuel cells(PEMFCs)are composed of a catalyst,its support,an ionomer and a solvent and are used with solution processing approaches to manufacture conventional catalyst layers(CLs).Because of this,catalyst ink formulation and deposition processes are closely related to CL structure and performance.However,catalyst inks with ideal rheology and optimized electrochemical performances remain lacking in the large-scale application of PEMFCs.To address this,this review will summarize current progress in the formulation,characterization,modeling and deposition of catalyst inks.In addition,this review will highlight recent advancements in catalyst ink materials and discuss corresponding complex interactions.This review will also present various catalyst ink dispersion methods with insights into their stability and introduce the application of small-angle scattering and cryogenic transmission electron microscopy(cryo-TEM)technologies in the characterization of catalyst ink microstructures.Finally,recent studies in the kinetic modeling and deposition of catalyst inks will be analyzed. 展开更多
关键词 Catalyst ink ink formulation ink modeling ink deposition process Proton exchange membrane fuel cell Catalyst layer
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Direct ink writing of conductive materials for emerging energy storage systems 被引量:1
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作者 Ting Huang Wenfeng Liu +2 位作者 Chenliang Su Ya-yun Li Jingyu Sun 《Nano Research》 SCIE EI CSCD 2022年第7期6091-6111,共21页
Direct ink writing(DIW)has recently emerged as an appealing method for designing and fabricating three-dimensional(3D)objects.Complex 3D structures can be built layer-by-layer via digitally controlled extrusion and de... Direct ink writing(DIW)has recently emerged as an appealing method for designing and fabricating three-dimensional(3D)objects.Complex 3D structures can be built layer-by-layer via digitally controlled extrusion and deposition of aqueous-based colloidal pastes.The formulation of well-dispersed suspensions with specific rheological behaviors is a prerequisite for the use of this route.In this review article,the fundamental concepts of DIW are presented,including the operation principles and basic features.Typical strategies used for ink formulation are discussed with a focus on the most widely used electrode materials,including graphene,Mxenes,and carbon nanotubes.The recent progress in printing design of emerging energy storage systems,encompassing rechargeable batteries,supercapacitors,and hybrid capacitors,is summarized.Challenges and future perspectives are also covered to provide guidance for the future development of DIW. 展开更多
关键词 direct ink writing energy storage ink formulation conductive materials structure-performance relationship
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