液晶
材料科学
双折射
纳米光子学
圆极化
光电子学
光学
纤维素
胆甾液晶
纳米复合材料
偶氮苯
雷
结构着色
纳米材料
极化(电化学)
光子晶体
等离子体子
光子学
纳米技术
化学工程
有机化学
物理
化学
工程类
物理化学
微带线
作者
Prasaanth Ravi Anusuyadevi,Ravi Shanker,Yuxiao Cui,Anastasia V. Riazanova,Mikael Järn,Magnus Jonsson,Anna J. Svagan
标识
DOI:10.1002/adma.202101519
摘要
Cellulose nanocrystals (CNCs) possess the ability to form helical periodic structures that generate structural colors. Due to the helicity, such self-assembled cellulose structures preferentially reflect left-handed circularly polarized light of certain colors, while they remain transparent to right-handed circularly polarized light. This study shows that combination with a liquid crystal enables modulation of the optical response to obtain light reflection of both handedness but with reversed spectral profiles. As a result, the nanophotonic systems provide vibrant structural colors that are tunable via the incident light polarization. The results are attributed to the liquid crystal aligning on the CNC/glucose film, to form a birefringent layer that twists the incident light polarization before interaction with the chiral cellulose nanocomposite. Using a photoresponsive liquid crystal, this effect can further be turned off by exposure to UV light, which switches the nematic liquid crystal into a nonbirefringent isotropic phase. The study highlights the potential of hybrid cellulose systems to create self-assembled yet advanced photoresponsive and polarization-tunable nanophotonics.
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