Baek Young-Bin, Choi Soo-Hyung, Shin Dong-Myung
J Nanosci Nanotechnol. 2015 Feb;15(2):1624-7. doi: 10.1166/jnn.2015.9323.
Optical properties of photonic crystal film were investigated by tuning photonic band gap (PBG). The lamellar-forming photonic films were prepared by nearly symmetric poly(styrene-b-2-vinyl pyridine) (PS-b-P2VP) block copolymers. Molecular weight of PS block and P2VP block is 52 kg/mol, and 57 kg/mol, respectively. When submerged in water, the lamellar films were swollen and show Bragg reflection in visible light region. We observed that the reflection color can be tuned by ion concentration (e.g., hydrogen or metal ion) in water. The higher concentration of hydrogen ion in solution, the longer reflectance wavelength shifted (from 537 nm to 743 nm). In addition, max-reflectance wavelength is dependent on both metal ion and the concentration. The max-reflectance wavelength is shifted from 653 nm (i.e., in water without ion) to 430 nm, 465 nm, and 505 nm for 120 mM of Ca2+, Fe2+, and Cu2+, respectively. Therefore, we can control the photonic band gap of photonic devices by changing the condition of swelling solution.
通过调节光子带隙(PBG)研究了光子晶体薄膜的光学性质。层状光子薄膜由近乎对称的聚(苯乙烯 - b - 2 - 乙烯基吡啶)(PS - b - P2VP)嵌段共聚物制备。PS嵌段和P2VP嵌段的分子量分别为52 kg/mol和57 kg/mol。当浸入水中时,层状薄膜会溶胀并在可见光区域呈现布拉格反射。我们观察到反射颜色可以通过水中的离子浓度(例如氢离子或金属离子)来调节。溶液中氢离子浓度越高,反射波长偏移越长(从537 nm到743 nm)。此外,最大反射波长取决于金属离子及其浓度。对于120 mM的Ca2 +、Fe2 +和Cu2 +,最大反射波长分别从653 nm(即无离子的水中)偏移到430 nm、465 nm和505 nm。因此,我们可以通过改变溶胀溶液的条件来控制光子器件的光子带隙。