Dual-Function Smart Windows Using Polymer Stabilized Cholesteric Liquid Crystal Driven with Interdigitated Electrodes

Author:

Jin Xiaoyu1,Hao Yuning1,Su Zhuo2ORCID,Li Ming3,Zhou Guofu2,Hu Xiaowen2ORCID

Affiliation:

1. College of Physics and Electronic Information, Yunnan Normal University, Kunming 650500, China

2. SCNU-TUE Joint Research Lab of Device Integrated Responsive Materials (DIRM), National Center for International Research on Green Optoelectronics, South China Normal University, No. 378, West Waihuan Road, Guangzhou Higher Education Mega Center, Guangzhou 510006, China

3. Solar Energy Research Institute, Yunnan Normal University, Kunming 650500, China

Abstract

In this study, we present an electrically switchable window that can dynamically transmit both visible light and infrared (IR) light. The window is based on polymer stabilized cholesteric liquid crystals (PSCLCs), which are placed between a top plate electrode substrate and a bottom interdigitated electrode substrate. By applying a vertical alternating current electric field between the top and bottom substrates, the transmittance of the entire visible light can be adjusted. The cholesteric liquid crystals (CLC) texture will switch to a scattering focal conic state. The corresponding transmittance decreases from 90% to less than 15% in the whole visible region. The reflection bandwidth in the IR region can be tuned by applying an in-plane interdigital direct current (DC) electric field. The non-uniform distribution of the in-plane electric field will lead to helix pitch distortion of the CLC, resulting in a broadband reflection. The IR reflection bandwidth can be dynamically adjusted from 158 to 478 nm. The electric field strength can be varied to regulate both the transmittance in the visible range and the IR reflection bandwidth. After removing the electric field, both features can be restored to their initial states. This appealing feature of the window enables on-demand indoor light and heat management, making it a promising addition to the current smart windows available. This technology has considerable potential for practical applications in green buildings and automobiles.

Funder

National Key R&D Program of China

Science and Technology Program of Guangzhou

Natural Science Foundation of Guangdong Province

Innovation Research Project of Foshan Education Bureau

Guangdong Provincial Key Laboratory of Optical Information Materials and Technology

MOE International Laboratory for Optical Information Technologies and the 111 Project, Yunnan expert workstation

Graduate Research and Innovation Foundation of Yunnan Normal University

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

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