A Single‐Step Dual Stabilization of Smart Window by the Formation of Liquid Crystal Physical Gels and the Construction of Liquid Crystal Chambers

Abstract

Smart windows are very attractive because they not only provide comfortable indoor conditions for cars and buildings, but also protect privacy. However, current smart windows have problems such as high energy consumption, slow response time, and poor stability. To solve these problems, a single‐step dual stabilization (SSDS) is newly proposed for the fabrication of robust liquid crystal (LC) smart windows switching fast at low voltage. Upon irradiating ultraviolet light on the selected area of the nematic (N) LC optical cell with photoisomerizable macrogelators (B3AZ) and photopolymerizable monomers, NLC physical gels (LCPGs) and partition walls are simultaneously constructed. LCPGs play a role of light shutter under a low electric field (9.6 Vpp) which is ten times lower than that of the conventional polymer‐stabilized LC‐based smart windows. Partition walls constructed by the selected area photopolymerization significantly enhance the mechanical stabilities. Based on the experimental results, it is realized that the NLC layer generated near the partition walls makes the LCPGs respond to a low voltage. Robust SSDS smart windows could open new doors for the development of high‐performance smart windows.

Document Details

Document Type
Pub Defense Publication
Publication Date
Nov 12, 2019
Source ID
10.1002/adfm.201906780

Entities

People

  • Dayoung Jung
  • Jahyeon Koo
  • Kwang-Un Jeong
  • Seok‐in Lim
  • Seungchul Yang
  • Shin‐woong Kang
  • Won‐jin Yoon
  • Yu‐jin Choi

Organizations

  • Air Force Office of Scientific Research
  • Jeonbuk National University
  • Korea Agency for Infrastructure Technology Advancement

Tags

Readers

  • Agent-Based Social Robotics and Mobile-Assisted Learning in Virtual Environments.
  • Database Systems and Applications
  • Materials Science and Engineering.