Tseng Hsin-Kai, Wu Po-Chang, Lee Wei
Institute of Imaging and Biomedical Photonics, College of Photonics, National Yang Ming Chiao Tung University, Guiren Dist., Tainan 711010, Taiwan.
Molecules. 2024 Jun 1;29(11):2607. doi: 10.3390/molecules29112607.
We propose a double-cell cholesteric liquid crystal (CLC) device composed of a left-handed (LH) CLC cell with a pair of sheet electrodes and a right-handed (RH) CLC cell with a tri-electrode configuration characterized by a sheet electrode on the top and an interdigitated electrode on the bottom substrates. Bi-reflected color tuning and hyper-reflective color switching are revealed from this cell stack via the electrothermal control of the central wavelengths of the LH- and RH-bandgaps by voltage-induced pseudo-dielectric heating. The two CLCs are thermally sensitive and exhibit overlapped bandgaps in the field-off state with nearly identical temperature dependence, resulting in a hyper-reflective color at 720 nm at 23.4 °C and 380 nm at 29.8 °C. Upon the application of 4 V at 2 MHz across the stacked device to induce pseudo-dielectric heating, two reflective colors can be resolved due to asymmetrical temperature elevations. Accordingly, the difference in wavelength between the two colors increases with increasing voltage through a series cell connection, while maintaining approximately constant via a parallel connection. This study provides a feasible pathway to developing a multifunctional device with electrothermally tunable bi-reflected and hyper-reflective states based on two conventional cell geometries, which is promising for lasers and color-related display applications.
我们提出了一种双单元胆甾相液晶(CLC)器件,它由一个带有一对片状电极的左旋(LH)CLC单元和一个具有三电极配置的右旋(RH)CLC单元组成,其特征在于顶部有一个片状电极,底部基板上有一个叉指电极。通过电压诱导的伪介电加热对LH和RH带隙的中心波长进行电热控制,从该单元堆叠中揭示了双反射颜色调谐和超反射颜色切换。这两个CLC对热敏感,在场关断状态下表现出重叠的带隙,且温度依赖性几乎相同,在23.4℃时在720nm处产生超反射颜色,在29.8℃时在380nm处产生超反射颜色。在2MHz下对堆叠器件施加4V电压以诱导伪介电加热时,由于温度升高不对称,可以分辨出两种反射颜色。因此,通过串联电池连接,两种颜色之间的波长差随电压增加而增大,而通过并联连接则保持大致恒定。本研究为基于两种传统单元几何结构开发具有电热可调双反射和超反射状态的多功能器件提供了一条可行的途径,这对于激光和与颜色相关的显示应用具有前景。