Department of Organic Chemistry and Center for Research in Biological Chemistry and Molecular Materials, University of Santiago de Compostela, E-15782 Santiago de Compostela, Spain.
J Am Chem Soc. 2012 Nov 28;134(47):19374-83. doi: 10.1021/ja3061112. Epub 2012 Sep 5.
A new family of nanospheres is made by complexation of divalent metals (i.e., Ca(2+), Ba(2+)) and poly(phenylacetylene) polymers bearing α-methoxyphenylacetic acid (MPA) pendants with high content of the cis isomer responsible for their helical structures. The resulting helical polymer-metal complex (HPMC) nanospheres present two interesting properties: (a) their diameter can be tuned to different sizes, to growth or to shrink, by changing the metal ion or the polymer/metal ion ratio, and (b) the helicity on the surface and the interior of the particle can be tuned to any of the two helical senses (M or P) by selection of the metal ion. The role of the solvent, the metal ion, and the helicity of the polymer in the aggregation are discussed. The ability of these nanospheres to encapsulate is demonstrated with examples.
一种新型纳米球是通过二价金属(即 Ca(2+)、Ba(2+))与带有高含量顺式异构体的α-甲氧基苯乙酸(MPA)侧基的聚(苯乙炔)聚合物的络合作用制得的,顺式异构体负责其螺旋结构。所得的螺旋聚合物-金属配合物(HPMC)纳米球具有两个有趣的性质:(a)通过改变金属离子或聚合物/金属离子的比例,可以将其直径调至不同的尺寸,或生长或收缩;(b)通过选择金属离子,可以将颗粒表面和内部的螺旋性调至任何两种螺旋感(M 或 P)之一。讨论了溶剂、金属离子和聚合物的螺旋性在聚集中的作用。通过实例证明了这些纳米球封装的能力。