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不对称胶体Janus颗粒的形成取决于核心尺寸。

Asymmetric Colloidal Janus Particle Formation Is Core-Size-Dependent.

作者信息

Landon Preston B, Mo Alexander H, Printz Adam D, Emerson Chris, Zhang Chen, Janetanakit Woraphong, Colburn David A, Akkiraju Siddhartha, Dossou Samuel, Chong Baxi, Glinsky Gennadi, Lal Ratnesh

机构信息

Department of Bioengineering, §Department of Mechanical and Aerospace Engineering, ∥Materials Science and Engineering Program, ⊥Department of Nanoengineering, and #Institute of Engineering in Medicine, University of California, San Diego , 9500 Gilman Drive, La Jolla, California 92093, United States.

出版信息

Langmuir. 2015 Aug 25;31(33):9148-54. doi: 10.1021/acs.langmuir.5b01499. Epub 2015 Aug 12.

Abstract

Colloidal particles with asymmetric surface chemistry (Janus particles) have unique bifunctional properties. The size of these particles is an important determinant for their applications in diverse fields from drug delivery to chemical catalysis. The size of Janus particles, with a core surface coated with carboxylate and a partially encapsulating silica shell, depends upon several factors, including the core size and the concentration of carboxylate coating. The role of the carboxylate coating on the Janus particle size is well-understood; however, the role of the core size is not well defined. The role of the carboxylated polystyrene (cPS) core size on the cPS-silica Janus particle morphology (its size and shape) was examined by testing two different silica sizes and five different cPS core sizes. Results from electron microscopy (EM) and dynamic light scattering (DLS) analysis indicate that the composite cPS-silica particle acquires two distinct shapes: (i) when the size of the cPS core is much smaller than the non-cPS silica (b-SiO2) sphere, partially encapsulated Janus particles are formed, and (ii) when the cPS core is larger than or equal to the b-SiO2 sphere, a raspberry-like structure rather than a Janus particle is formed. The cPS-silica Janus particles of ∼100-500 nm size were obtained when the size of the cPS core was much smaller than the non-cPS silica (b-SiO2) sphere. These scalable nanoscale Janus particles will have wide application in a multifunctional delivery platform and catalysis.

摘要

具有不对称表面化学性质的胶体颗粒(两面神颗粒)具有独特的双功能特性。这些颗粒的尺寸是其在从药物递送化学催化等不同领域应用的重要决定因素。对于核心表面包覆有羧酸盐且部分包覆有二氧化硅壳层的两面神颗粒,其尺寸取决于几个因素,包括核心尺寸和羧酸盐包覆的浓度。羧酸盐包覆对两面神颗粒尺寸的作用已得到充分理解;然而,核心尺寸的作用尚未明确界定。通过测试两种不同的二氧化硅尺寸和五种不同的羧化聚苯乙烯(cPS)核心尺寸,研究了羧化聚苯乙烯(cPS)核心尺寸对cPS-二氧化硅两面神颗粒形态(其尺寸和形状)的影响。电子显微镜(EM)和动态光散射(DLS)分析结果表明,复合cPS-二氧化硅颗粒呈现出两种不同的形状:(i)当cPS核心的尺寸远小于非cPS二氧化硅(b-SiO2)球体时,会形成部分包覆的两面神颗粒;(ii)当cPS核心大于或等于b-SiO2球体时,会形成类似覆盆子的结构而非两面神颗粒。当cPS核心的尺寸远小于非cPS二氧化硅(b-SiO2)球体时,可获得尺寸约为100-500nm的cPS-二氧化硅两面神颗粒。这些可扩展的纳米级两面神颗粒将在多功能递送平台和催化领域有广泛应用。

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