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聚合物分散和聚合物稳定液晶共存体系制备热光透过可控膜。

Preparation of a Thermally Light-Transmittance-Controllable Film from a Coexistent System of Polymer-Dispersed and Polymer-Stabilized Liquid Crystals.

机构信息

Department of Materials Physics and Chemistry, University of Science and Technology Beijing , Beijing 100083, P. R. China.

Department of Materials Science and Engineering, College of Engineering, Peking University , Beijing 100871, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2017 Jan 25;9(3):2942-2947. doi: 10.1021/acsami.6b13366. Epub 2017 Jan 11.

Abstract

Polymer-dispersed liquid crystal (PDLC) and polymer-stabilized liquid crystal (PSLC) systems are the two primary distinct systems in the field of liquid crystal (LC) technology, and they are differentiated by their unique microstructures. Here, we present a novel coexistent system of polymer-dispersed and polymer-stabilized liquid crystals (PD&SLCs), which forms a homeotropically aligned polymer network (HAPN) within the LC droplets after a microphase separation between the LC and polymer matrix and combines the advantages of both the PDLC and PSLC systems. Then, we prepare a novel thermally light-transmittance-controllable (TLTC) film from the PD&SLC system, where the transmittance can be reversibly changed through thermal control from a transparent to a light-scattering state. The film also combines the advantageous features of flexibility and a potential for large-scale manufacturing, and it shows significant promise in future applications from smart windows to temperature sensors.

摘要

聚合物分散液晶 (PDLC) 和聚合物稳定液晶 (PSLC) 系统是液晶 (LC) 技术领域中的两个主要不同系统,它们通过其独特的微观结构来区分。在这里,我们提出了一种新型的聚合物分散和聚合物稳定液晶 (PD&SLC) 共存系统,该系统在 LC 与聚合物基体之间发生微相分离后,在 LC 液滴内形成各向同性排列的聚合物网络 (HAPN),并结合了 PDLC 和 PSLC 系统的优点。然后,我们从 PD&SLC 系统中制备了一种新型的热光透射可控 (TLTC) 薄膜,通过热控制可以将透过率从透明状态可逆地改变为光散射状态。该薄膜还结合了灵活性和大规模制造的潜力的优点,并在从智能窗户到温度传感器的未来应用中具有广阔的前景。

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