Oh Jung Kwon, Tang Chuanbing, Gao Haifeng, Tsarevsky Nicolay V, Matyjaszewski Krzysztof
Center for Macromolecular Engineering, Department of Chemistry, Carnegie Mellon University, 4400 Fifth Avenue, Pittsburgh, Pennsylvania 15213, USA.
J Am Chem Soc. 2006 Apr 26;128(16):5578-84. doi: 10.1021/ja060586a.
A new methodology for the synthesis and functionalization of nanometer-sized colloidal particles consisting of well-defined, water-soluble, functional polymers with narrow molecular weight distribution (M(w)/M(n) < 1.3) was developed, utilizing atom transfer radical polymerization (ATRP) of water-soluble monomers in an inverse miniemulsion. The optional introduction of a disulfide-functionalized cross-linker allowed for the synthesis of cross-linked (bio)degradable nanogels. Dynamic light scattering (DLS) and atomic force microscopy (AFM) measurements indicated that these particles possessed excellent colloidal stability. ATRP in inverse miniemulsion led to materials with several desirable features. The colloidal particles preserved a high degree of halogen chain-end functionality, which enabled further functionalization. Cross-linked nanogels with a uniformly cross-linked network were prepared. They were degraded to individual polymeric chains with relatively narrow molecular weight distribution (M(w)/M(n) < 1.5) in a reducing environment. Higher colloidal stability, higher swelling ratios, and better controlled degradability indicated that the nanogels prepared by ATRP were superior to their corresponding counterparts prepared by conventional free radical polymerization (RP) in inverse miniemulsion.
开发了一种合成和功能化纳米级胶体颗粒的新方法,该颗粒由具有明确结构、水溶性、分子量分布窄(M(w)/M(n) < 1.3)的功能性聚合物组成,利用水溶性单体在反相微乳液中的原子转移自由基聚合(ATRP)。通过选择性引入二硫键功能化交联剂,可以合成交联的(可生物)降解纳米凝胶。动态光散射(DLS)和原子力显微镜(AFM)测量表明,这些颗粒具有优异的胶体稳定性。反相微乳液中的ATRP产生了具有几个理想特性的材料。胶体颗粒保留了高度的卤素链端官能团,这使得进一步功能化成为可能。制备了具有均匀交联网络的交联纳米凝胶。它们在还原环境中降解为分子量分布相对较窄(M(w)/M(n) < 1.5)的单个聚合物链。更高的胶体稳定性、更高的溶胀率和更好控制的降解性表明,通过ATRP制备的纳米凝胶优于通过反相微乳液中的传统自由基聚合(RP)制备的相应纳米凝胶。