School of Chemistry and Chemical Engineering, State Key Laboratory of Metal Matrix Composites , Shanghai Jiao Tong University , Dongchuan Road No. 800 , Shanghai 200240 , China.
ACS Appl Mater Interfaces. 2019 Oct 23;11(42):39192-39200. doi: 10.1021/acsami.9b14201. Epub 2019 Oct 14.
It has been widely reported that cellulose nanocrystals (CNCs) demonstrate a special structural color, which stems from chiral nematic domains. Herein, the humidity and heat dual response nanocomposite films with multilayered helical structure were prepared by self-assembling of CNCs and hydrazone groups modified poly(-isopropylacrylamide) (PNIPAM) copolymers. Furthermore, glutaraldehyde was involved to act as a chemical linker to improve cyclic stability by forming acylhydrazone bonds. The structural color of the films could be easily regulated by humidity, heat, or the content of modified PNIPAM copolymers. The absorption of water in higher humidity led to volume expansion of the resin, resulting in a red shift for up to 145 nm. In contrast, the resin shrank under the temperature above the lower critical solution temperature of PNIPAM, leading to a blue shift for up to 87 nm. It was notable that the change of color can be easily captured by the naked eyes. Moreover, the films exhibited excellent stability and cyclicity in response to either vapor or liquid water due to the chemical linking between CNCs and resins. The as-prepared CNCs/PNIPAM nanocomposite films with humidity or heat responsibilities are promising in stimuli-responsive sensors, printing industry, surface decorations, and so forth.
据广泛报道,纤维素纳米晶体(CNCs)表现出特殊的结构色,这源于手性向列畴。本文通过 CNCs 和腙基团修饰的聚(异丙基丙烯酰胺)(PNIPAM)共聚物的自组装,制备了具有多层螺旋结构的湿度和热双重响应纳米复合膜。此外,戊二醛作为化学连接剂参与其中,通过形成酰腙键提高循环稳定性。通过湿度、温度或改性 PNIPAM 共聚物的含量,可以轻松调节薄膜的结构颜色。在较高湿度下吸收水分会导致树脂体积膨胀,导致吸收峰红移高达 145nm。相比之下,树脂在 PNIPAM 的下临界溶液温度以上收缩,导致吸收峰蓝移高达 87nm。值得注意的是,颜色的变化可以用肉眼轻松捕捉。此外,由于 CNCs 和树脂之间的化学连接,薄膜在响应蒸汽或液态水时表现出优异的稳定性和循环性。具有湿度或热响应的 CNCs/PNIPAM 纳米复合膜在响应传感器、印刷工业、表面装饰等方面具有广阔的应用前景。