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姚立,博士,研究员

地址:北京市海淀区中关村北一街2号,中国科学院化学研究所。
邮编:100190
电话010-62588930
电子邮箱:yaoli@iccas.ac.cn
 

1998年9月至2002年7月,武汉理工大学,学士(高分子材料与工程专业)                                                                    

2003年9月至2008年6月,中国科学院化学研究所,博士(物理化学专业,导师:葛茂发研究员)

2008年8月2013年10月,美国休斯顿大学,博士后,(Department of Chemistry, Sponsor: Prof. Shoujun Xu.)               

2013年12月至今,中国科学院化学研究所,研究员,担任课题组长(分子动态与稳态结构实验室)

在超低场磁探测技术、分子和细胞的磁成像及相互作用等化学生物学与生命分析化学研究领域做出了具有创新性的工作。通过高灵敏的光学原子磁力仪,开发磁性纳米颗粒物的定量成像技术和新型的磁基分子探测技术,研究分子和细胞的磁成像和生物分子间的相互作用。

J. Am. Chem. Soc.Angew. Chem. Int. Ed.Adv. Mater.等国际期刊现已发表SCI科研论文70余篇,申请发明专利10余项。

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祝贺刘亚静同学发表文章

Deformable, sensible, and reconfigurable microgels with structural color: potential as camouflage soft microrobots

Yajing Liu, Xiuyu Wang*, Feng Feng, Qilong Li, Hanzhang Xiao and Li Yao*

     Camouflage soft microrobots that undergo controlled shape and optical changes in response to a range of stimuli are of interest in microscale soft robotic and biomedical devices. The materials that such microbots require must possess excellent mechanical properties and special optical properties. In this paper, a calibrated droplet was constructed by droplet microfluidics, which served as a stimuli-responsive, semi-confined space to process block copolymer (BCP) self-assembly. This unique confined space allows block copolymers to respond to stimuli (pH, temperature, and magnetic energy), generating a series of topologically heterogeneous microgels (THGMs) with a soft nature. This soft property endows the THGMs with superior deformability, sensitivity and reconfigurability: three essential elements of soft microrobots. Simultaneously, the topological microstructures endow the THGMs with vivid iridescence and a broad color appearance, which is derived from the combined grating dispersion and film interference. Such synergistic color-changing, shape-morphing and stimuli-sensing capabilities have been integrated into a microscale entity for the first time, yielding a multifunctional synergy towards more powerful soft robotics (e.g. camouflaged robots). This work has made color-changeable soft machines accessible, and is expected to hold wide potential application in biomimetic soft robotics, biological sensors, and camouflage.

 

文章链接:https://doi.org/10.1039/D2TC00142J