Department of Biomedical Engineering, Duke University, Durham, NC (USA); NSF Research Triangle Materials Research Science and Engineering Center (USA).
Angew Chem Int Ed Engl. 2014 Jul 28;53(31):8070-3. doi: 10.1002/anie.201402471. Epub 2014 May 22.
Nucleation and growth methods offer scalable means of synthesizing colloidal particles with precisely specified size for applications in chemical research, industry, and medicine. These methods have been used to prepare a class of silicone gel particles that display a range of programmable properties and narrow size distributions. The acoustic contrast factor of these particles in water is estimated and can be tuned such that the particles undergo acoustophoresis to either the pressure nodes or antinodes of acoustic standing waves. These particles can be synthesized to display surface functional groups that can be covalently modified for a range of bioanalytical and acoustophoretic sorting applications.
成核和生长方法为合成具有精确指定尺寸的胶体颗粒提供了可扩展的手段,可应用于化学研究、工业和医学领域。这些方法已被用于制备一类硅胶颗粒,它们具有一系列可编程的性质和较窄的尺寸分布。估计了这些颗粒在水中的声对比度因子,并可以对其进行调整,以使颗粒在声驻波的压力节点或反节点处发生声泳。可以合成这些颗粒以显示表面功能基团,这些基团可以通过共价修饰用于一系列生物分析和声泳分选应用。