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光响应、形状可切换的嵌段共聚物颗粒

Light-Responsive, Shape-Switchable Block Copolymer Particles.

作者信息

Lee Junhyuk, Ku Kang Hee, Kim Jinwoo, Lee Young Jun, Jang Se Gyu, Kim Bumjoon J

机构信息

Department of Chemical and Biomolecular Engineering , Korea Advanced Institute of Science and Technology (KAIST) , Daejeon 34141 , Republic of Korea.

Department of Chemistry , Massachusetts Institute of Technology (MIT) , Cambridge , Massachusetts 02139 , United States.

出版信息

J Am Chem Soc. 2019 Sep 25;141(38):15348-15355. doi: 10.1021/jacs.9b07755. Epub 2019 Sep 4.

Abstract

A robust strategy is developed for preparing light-responsive block copolymer (BCP) particles in which shape and color can be actively controlled with high spatial and temporal resolution. The key to achieving light-responsive shape transitions of BCP particles is the design and synthesis of surfactants containing light-active groups (i.e., nitrobenzyl esters and coumarin esters) that modulate the amphiphilicity and interfacial activity of the surfactants in response to light of a specific wavelength. These light-induced changes in surfactant structure modify the surface and wetting properties of BCP particles, affording both shape and morphological transitions of the particles, for example from spheres with an onion-like inner morphology to prolate or oblate ellipsoids with axially stacked nanostructures. In particular, wavelength-selective shape transformation of the BCP particles can be achieved with a mixture of two light-active surfactants that respond to different wavelengths of light (i.e., 254 and 420 nm). Through the use of light-emitting, photoresponsive surfactants, light-induced changes in both color and shape are further demonstrated. Finally, to demonstrate the potential of the light-triggered shape control of BCP particles in patterning features with microscale resolution, the shape-switchable BCP particles are successfully integrated into a patterned, free-standing hydrogel film, which can be used as a portable, high-resolution display.

摘要

开发了一种稳健的策略来制备光响应性嵌段共聚物(BCP)颗粒,其中颗粒的形状和颜色可以通过高空间和时间分辨率进行主动控制。实现BCP颗粒光响应形状转变的关键在于设计和合成含有光活性基团(即硝基苄酯和香豆素酯)的表面活性剂,这些基团可根据特定波长的光调节表面活性剂的两亲性和界面活性。表面活性剂结构的这些光诱导变化改变了BCP颗粒的表面和润湿性能,使颗粒实现形状和形态转变,例如从具有洋葱状内部形态的球体转变为具有轴向堆叠纳米结构的长椭球体或扁椭球体。特别地,使用两种对不同波长的光(即254和420 nm)有响应的光活性表面活性剂的混合物,可以实现BCP颗粒的波长选择性形状转变。通过使用发光、光响应性表面活性剂,进一步证明了光诱导的颜色和形状变化。最后,为了证明BCP颗粒的光触发形状控制在微尺度分辨率图案特征中的潜力,可形状切换的BCP颗粒成功集成到图案化的独立水凝胶薄膜中,该薄膜可用作便携式高分辨率显示器。

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