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首页> 外文期刊>Electron Devices, IEEE Transactions on >Electron Beam Curing Technology for Very High-Throughput Manufacturing of Flexible Alternating Current Powder Electroluminescent Devices
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Electron Beam Curing Technology for Very High-Throughput Manufacturing of Flexible Alternating Current Powder Electroluminescent Devices

机译:用于柔性交流粉末电致发光器件超高通量制造的电子束固化技术

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摘要

Thick-film alternating current powder-based electroluminescent (ACPEL) succeeds on the market as mature technology for large-area light sources. An additional boost for its development may come from the radiation curing technology. Since it is totally compatible with high-speed roll-to-roll processing, radiation curing can offer multiple advantages to further lower costs and make easier the fabrication process of ACPEL devices. In this paper, the application of the electron beam (EB) curing technology to produce flexible ACPEL devices was explored for the first time. In particular, devices with emitting layer made by EB irradiation were successfully fabricated on poly(ethylene terephthalate) (PET) substrate. Device properties were evaluated and compared with those obtained using the conventional ultraviolet curing process. Smaller driving voltages and higher luminous output were observed for the EB treated samples as a consequence of a more cross-linked polymeric binder of the emitting layer generated. In addition, possible effects of EB overdose were also investigated; experiments revealed that excessively high doses can induce the degradation of both polymeric binder and emitting particles. Therefore, the feasibility of using the EB curing was proven to fabricate ACPEL devices, launching it as the next future technology for more sustainable, very fast, and one-step manufacturing of powder-based alternating current EL devices.
机译:厚膜交流粉末电致发光(ACPEL)作为大面积光源的成熟技术在市场上取得了成功。辐射固化技术可以进一步促进其发展。由于辐射固化与高速卷对卷处理完全兼容,因此辐射固化可以提供多种优势,从而进一步降低成本,并使ACPEL器件的制造过程更加轻松。本文首次探讨了电子束(EB)固化技术在生产柔性ACPEL器件中的应用。特别是,在聚对苯二甲酸乙二醇酯(PET)基板上成功地制造了具有通过EB辐射制成的具有发射层的器件。评估器件性能,并将其与使用常规紫外线固化工艺获得的性能进行比较。对于EB处理的样品,观察到较小的驱动电压和较高的发光输出,这是由于所产生的发射层的交联聚合物粘合剂更多。此外,还研究了EB过量的可能影响;实验表明,过高的剂量会引起聚合物粘合剂和发射颗粒的降解。因此,使用EB固化的可行性已被证明可用于制造ACPEL器件,并将其作为下一代未来技术,用于更可持续,非常快速且一步一步地制造基于粉末的交流电EL器件。

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