Merck
CN

Fast Switching of Bright Whiteness in Channeled Hydrogel Networks.

Advanced functional materials (2020-07-21)
Amanda Eklund, Hang Zhang, Hao Zeng, Arri Priimagi, Olli Ikkala
摘要

Beside pigment absorption and reflection by periodic photonic structures, natural species often use light scattering to achieve whiteness. Synthetic hydrogels offer opportunities in stimuli-responsive materials and devices; however, they are not conventionally considered as ideal materials to achieve high whiteness by scattering due to the ill-defined porosities and the low refractive index contrast between the polymer and water. Herein, a poly(N-isopropylacrylamide) hydrogel network with percolated empty channels (ch-PNIPAm) is demonstrated to possess switchable bright whiteness upon temperature changes, obtained by removing the physical agarose gel in a semi-interpenetrating network of agarose and PNIPAm. The hydrogel is highly transparent at room temperature and becomes brightly white above 35 °C. Compared to conventional PNIPAm, the ch-PNIPAm hydrogel exhibits 80% higher reflectance at 800 nm and 18 times faster phase transition kinetics. The nanoscopic channels in the ch-PNIPAm facilitate water diffusion upon phase transition, thus enabling the formation of smaller pores and enhanced whiteness in the gel. Furthermore, fast photothermally triggered response down to tens of milliseconds can be achieved. This unique property of the ch-PNIPAm hydrogel to efficiently scatter visible light can be potentially used for, e.g., smart windows, optical switches, and, as demonstrated in this report, thermoresponsive color displays.

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Sigma-Aldrich
N -异丙基丙烯酰胺, ≥99%
Sigma-Aldrich
琼脂糖, Ultra-low Gelling Temperature, molecular biology grade
Sigma-Aldrich
N-乙烯基己内酰胺, 98%, stabilized
Sigma-Aldrich
琼脂糖, Ultra-low Gelling Temperature
Sigma-Aldrich
2-甲基-2-丙烯酸-2-(2-甲氧基乙氧基)乙酯, 95%
Sigma-Aldrich
3-(三甲氧基甲硅基)丙烯酸丙酯, 92%, contains 100 ppm BHT as inhibitor