Single-Stimulus-Induced Modulation of Multiple Optical Properties

被引:45
作者
Li, Hai [1 ]
Li, Chaoran [1 ]
Sun, Wei [2 ]
Wang, Yuzhu [3 ]
Hua, Wenqiang [3 ]
Liu, Jingjing [1 ]
Zhang, Shumin [1 ]
Chen, Zhijie [1 ]
Wang, Shenghua [1 ]
Wu, Zhiyi [1 ]
Zhu, Qishan [4 ]
Tang, Rujun [4 ]
Yu, Jia [1 ]
He, Le [1 ]
Ozin, Geoffrey A. [2 ]
Zhang, Xiaohong [1 ]
机构
[1] Soochow Univ, Soochow Univ Western Univ Ctr Synchrotron Radiat, Jiangsu Key Lab Carbon Based Funct Mat & Devices, Inst Funct Nano & Soft Mat FUNSOM, Suzhou 215123, Peoples R China
[2] Univ Toronto, Dept Chem, Solar Fuels Cluster, Mat Chem & Nanochem Res Grp, Toronto, ON M5S 3H6, Canada
[3] Chinese Acad Sci, Shanghai Inst Appl Phys, Shanghai 201204, Peoples R China
[4] Soochow Univ, Coll Phys Optoelect & Energy, Jiangsu Key Lab Thin Films, Suzhou 215006, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金; 加拿大自然科学与工程研究理事会;
关键词
crystalline colloidal arrays; displays; magneto-optical response; smart optical materials; smart windows; STOP BAND; ROUTE;
D O I
10.1002/adma.201900388
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Stimuli-responsive smart optical materials hold great promise for applications in active optics, display, sensing, energy conversion, military camouflage, and artificial intelligence. However, their applications are greatly restricted by the difficulty of tuning different optical properties within the same material, especially by a single stimulus. Here, magnetic modulations of multiple optical properties are demonstrated in a crystalline colloidal array (CCA) of magnetic nanorods. Small-angle X-ray scattering studies reveal that these nanorods form an unusual monoclinic crystal in concentrated suspensions. The CCA exhibits optical anisotropy in the form of a photonic bandgap and birefringence, thus enabling magnetic tuning of the structural color and transmittance at a rate of 50 Hz. As a proof-of-concept, it is further demonstrated that the fabrication of a multifunctional device for display, anticounterfeiting, and smart-window applications based on this multiple magneto-optical effect. The study not only provides a new model system for understanding colloidal assembly, but also opens up opportunities for new applications of smart optical materials for various purposes.
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页数:6
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