Oriented and annealed poly(lactic acid) films and their performance in flexible printed and hybrid electronics

IF 2.1 4区 材料科学 Q3 MATERIALS SCIENCE, COATINGS & FILMS Journal of Plastic Film & Sheeting Pub Date : 2021-02-01 DOI:10.1177/8756087920988569
Enni Luoma, M. Välimäki, Teijo Rokkonen, Hannu Sääskilahti, J. Ollila, J. Rekilä, K. Immonen
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引用次数: 19

Abstract

Flexible and hybrid electronics (FHE) are widely utilized from wearable to automotive applications. Instead of commonly used poly(ethylene terephthalate) (PET) film, bio-based and biodegradable polymer, poly(lactic acid) (PLA), is a most promising novel substrate alternative for FHE. From the point of heat curable conductive inks, the poor heat resistance and inherent brittleness are the major drawbacks of PLA. By increasing the PLA film crystallinity through orientation and annealing, its properties can be improved. Two commercial grades, standard PLA (PLA) and a high heat PLA (hhPLA), plus one stereocomplex PLA (scPLA) blend were used to compare PLA performance with different optical purities and crystallinity for printed FHE. Machine direction orientation (MDO), biaxial orientation (BO) and annealing improved the stability of the laboratory and pilot scale manufactured PLA films. MDO was more effective in improving stiffness and strength while BO resulted in more ductile behaviour. In hhPLA the crystallinity increased from 0% to 50% improving tensile strength by 83%, tensile modulus by 52% and strain at break from 3.7% to 114% with 3 × 3 BO and annealing. The scPLA blend contained homo- and stereocomplex crystallites and a double melting peak behaviour provided higher temperature stability through final melting at 220°C. Its optical transparency reached 95%, remaining high up to 250 nm wavelength. In roll-to-roll printing, the PLA and hhPLA films were dried at 100°C prior the printing and this decreased the MD elongation from 2.55% and 0.27% to 0.00–0.05%. The sheet resistance of printed silver was <40 mΩ/sq with additional drying for printed and hybrid integrated light-emitting diode (LED) foils. Printed LED foils on PLA had dimensional and electrical performance comparable to PET, even though lower drying temperatures were used.
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取向和退火聚乳酸薄膜及其在柔性印刷和混合电子中的性能
柔性和混合电子(FHE)广泛应用于从可穿戴设备到汽车应用。生物基和可生物降解聚合物聚乳酸(PLA)取代了常用的聚对苯二甲酸乙酯(PET)薄膜,是一种最有前途的新型FHE衬底替代品。从热固化导电油墨的角度来看,PLA的主要缺点是耐热性差和固有的脆性。通过取向和退火来提高聚乳酸薄膜的结晶度,可以改善其性能。使用两种商业等级,标准PLA (PLA)和高热PLA (hhPLA),以及一种立体配合物PLA (scPLA)共混物来比较PLA在印刷FHE中具有不同光学纯度和结晶度的性能。机器定向(MDO)、双轴定向(BO)和退火提高了实验室和中试规模制造的PLA薄膜的稳定性。MDO在提高刚度和强度方面更有效,而BO的延展性更强。在3 × 3 BO和退火条件下,hpla的结晶度从0%提高到50%,拉伸强度提高83%,拉伸模量提高52%,断裂应变从3.7%提高到114%。scPLA共混物含有同源和立体络合物晶体,双熔融峰行为在220°C的最终熔化时提供了更高的温度稳定性。其光学透明度达到95%,在250 nm波长处保持高透明度。在卷对卷印刷中,PLA和hhPLA薄膜在印刷前在100°C下干燥,这将MD伸长率从2.55%和0.27%降低到0.00-0.05%。对于印刷和混合集成发光二极管(LED)箔,印刷银的片电阻<40 mΩ/sq。印制在PLA上的LED箔具有与PET相当的尺寸和电气性能,即使使用较低的干燥温度。
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来源期刊
Journal of Plastic Film & Sheeting
Journal of Plastic Film & Sheeting 工程技术-材料科学:膜
CiteScore
6.00
自引率
16.10%
发文量
33
审稿时长
>12 weeks
期刊介绍: The Journal of Plastic Film and Sheeting improves communication concerning plastic film and sheeting with major emphasis on the propogation of knowledge which will serve to advance the science and technology of these products and thus better serve industry and the ultimate consumer. The journal reports on the wide variety of advances that are rapidly taking place in the technology of plastic film and sheeting. This journal is a member of the Committee on Publication Ethics (COPE).
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