副教授
硕士生导师
教师拼音名称:wuzhongtao
电子邮箱:
学历:博士研究生
办公地点:青岛科技大学四方校区一号实验楼303
性别:男
联系方式:Email:zhongtaowu@163.com QQ:371767897
学位:理学博士
职称:副教授
毕业院校:荷兰格罗宁根大学
最后更新时间:..
关键字:THERMOTROPIC LIQUID-CRYSTALS; HIGH-ENERGY; PHOTOCHROMIC PROPERTIES; STORAGE MATERIALS; SPIROOXAZINE
摘要:Based on their stimuli-responsiveness, smart materials are able to undergo controllable physicochemical changes. As compared to the responsiveness to one specific stimulus, multiple stimuli-responsiveness would make smart materials adaptable to diverse environments, which is highly desired in the design of smart materials but appreciably more difficult to realize. Herein, an ammonium surfactant (SPA) based on spiropyran is designed for complexing with carboxymethylcellulose through an electrostatic route, affording a soft cellulose material (CMC-SPA) in solvent-free conditions. Thanks to the molecular design of SPA and the anisotropic arrangement of cellulose on SPA molecules, CMC-SPA exhibits triple stimuli-responsiveness by responding to light, heat and humidity. With good thermodynamic stabilities of different color states, CMC-SPA could well record optical information by changing colors under UV and visible irradiations. More interestingly, linear relationships between UV-visible absorption and temperature/humidity are established, endowing CMC-SPA with the functions of recording ceiling temperatures in inaccessible scenarios and indicating real-time environmental humidity. This study provides a design strategy for fabricating multiple stimuli-responsive materials, affording a new route for gaining smart biomaterials from biomacromolecules.
卷号:9
期号:1
是否译文:否