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基于聚合物分散液晶的可切换玻璃与真空玻璃耦合制造。

Polymer-dispersed liquid-crystal-based switchable glazing fabricated vacuum glass coupling.

作者信息

Nasir Naila, Hong Hyeryeon, Rehman Malik Abdul, Kumar Sunil, Seo Yongho

机构信息

Department of Nanotechnology & Advanced Materials Engineering and HMC, Sejong University Seoul 05006 Republic of Korea

出版信息

RSC Adv. 2020 Sep 1;10(53):32225-32231. doi: 10.1039/d0ra05911k. eCollection 2020 Aug 26.

Abstract

Polymer-dispersed liquid crystals (PDLCs) exhibiting transmittance switching are utilized for preserving energy and protecting privacy. Here we prepared a typical PDLC mixture from a commercially available polymer and liquid crystal with nano-beads. A wire-bar coater was used to coat the PDLC mixture on indium-tin-oxide-coated glass, and a PDLC cell was assembled by coupling another glass in a vacuum, instead of a polymer film. Uniform glass-based PDLCs were fabricated successfully with an area of 15 × 15 cm, while an injection process with capillary action was not available for this large-scale device fabrication. The switching behavior of the cells was characterized by ramping the AC voltage, and a transmittance change of ∼70% was measured. In a typical roll-to-roll process, only flexible polymer films have been used in lamination, in which deterioration in transparency occurs over the course of time, reducing the efficiency. In this study, to improve the optical properties, PDLC switchable glazing is fabricated directly onto glass substrates instead of onto plastic polymers. This PDLC switchable glazing, exhibiting low haziness and wide-angle vision, can be fabricated at a large scale by a vacuum-coupling process, with potential use as glass windows for energy-efficient buildings.

摘要

具有透过率切换功能的聚合物分散液晶(PDLC)被用于节能和保护隐私。在此,我们用一种市售聚合物、液晶以及纳米珠制备了一种典型的PDLC混合物。采用线棒涂布器将PDLC混合物涂覆在氧化铟锡涂层玻璃上,并通过在真空中与另一块玻璃耦合(而非聚合物薄膜)来组装PDLC盒。成功制备出了尺寸为15×15厘米的均匀玻璃基PDLC,而对于这种大规模器件制造,利用毛细作用的注入工艺不可行。通过施加交流电压来表征盒的切换行为,测得透过率变化约为70%。在典型的卷对卷工艺中,层压过程仅使用柔性聚合物薄膜,在此过程中透明度会随时间下降,降低了效率。在本研究中,为改善光学性能,将PDLC可切换玻璃窗直接制作在玻璃基板上而非塑料聚合物上。这种具有低雾度和广角视觉的PDLC可切换玻璃窗可通过真空耦合工艺大规模制造,具有用作节能建筑玻璃窗的潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7e1a/9056553/0b19f7ebe289/d0ra05911k-f1.jpg

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