当前位置:
X-MOL 学术
›
Adv. Opt. Mater.
›
论文详情
Our official English website, www.x-mol.net, welcomes your
feedback! (Note: you will need to create a separate account there.)
Softness Meets with Brightness: Dye-Doped Multifunctional Fluorescent Polymer Particles via Microfluidics for Labeling (Advanced Optical Materials 13/2021)
Advanced Optical Materials ( IF 8.0 ) Pub Date : 2021-07-05 , DOI: 10.1002/adom.202170050 Nikunjkumar R. Visaveliya 1, 2 , Johann Michael Köhler 1
Advanced Optical Materials ( IF 8.0 ) Pub Date : 2021-07-05 , DOI: 10.1002/adom.202170050 Nikunjkumar R. Visaveliya 1, 2 , Johann Michael Köhler 1
Affiliation
Polymer particles are soft and suitable for biological applications; fluorescent dyes are bright but quickly degrade. Thus, dye-doped fluorescent polymer particles are very promising for labeling. However, suitable tailoring of the particles is required, which can show biocompatibility, non-toxicity, and photostability. Therefore, in article number 2002219, Nikunjkumar R. Visaveliya and Johann Michael Köhler demonstrate various robust experimental strategies to bind fluorescent dyes in a polymer matrix covalently/non-covalently, as well as at the immediate surface via in-situ assembly and through bioconjugation. In this way, a multiscale and multicolor library of the fluorescent polymer particles for labeling applications, prepared by microfluidic supported syntheses, is established.
中文翻译:
柔软与明亮:通过微流体技术标记的染料掺杂多功能荧光聚合物颗粒(高级光学材料 13/2021)
聚合物颗粒柔软,适合生物应用;荧光染料很亮但很快就会降解。因此,染料掺杂的荧光聚合物颗粒非常有希望用于标记。然而,需要对颗粒进行适当的定制,以表现出生物相容性、无毒和光稳定性。因此,在文章编号 2002219 中,Nikunjkumar R. Visaveliya 和 Johann Michael Köhler 展示了各种稳健的实验策略,以共价/非共价方式结合聚合物基质中的荧光染料,以及通过原位组装和生物偶联在直接表面结合。通过这种方式,建立了用于标记应用的荧光聚合物颗粒的多尺度和多色库,由微流体支持的合成制备。
更新日期:2021-07-05
中文翻译:
柔软与明亮:通过微流体技术标记的染料掺杂多功能荧光聚合物颗粒(高级光学材料 13/2021)
聚合物颗粒柔软,适合生物应用;荧光染料很亮但很快就会降解。因此,染料掺杂的荧光聚合物颗粒非常有希望用于标记。然而,需要对颗粒进行适当的定制,以表现出生物相容性、无毒和光稳定性。因此,在文章编号 2002219 中,Nikunjkumar R. Visaveliya 和 Johann Michael Köhler 展示了各种稳健的实验策略,以共价/非共价方式结合聚合物基质中的荧光染料,以及通过原位组装和生物偶联在直接表面结合。通过这种方式,建立了用于标记应用的荧光聚合物颗粒的多尺度和多色库,由微流体支持的合成制备。