School of Chemistry, University of Bristol, Bristol, BS8 1TS, United Kingdom.
Nat Chem. 2010 Jul;2(7):566-70. doi: 10.1038/nchem.664. Epub 2010 May 30.
Non-spherical nanostructures derived from soft matter and with uniform size-that is, monodisperse materials-are of particular utility and interest, but are very rare outside the biological domain. We report the controlled formation of highly monodisperse cylindrical block copolymer micelles (length dispersity < or = 1.03; length range, approximately 200 nm to 2 microm) by the use of very small (approximately 20 nm) uniform crystallite seeds that serve as initiators for the crystallization-driven living self-assembly of added block-copolymer unimers with a crystallizable, core-forming metalloblock. This process is analogous to the use of small initiator molecules in classical living polymerization reactions. The length of the nanocylinders could be precisely controlled by variation of the unimer-to-crystallite seed ratio. Samples of the highly monodisperse nanocylinders of different lengths that are accessible using this approach have been shown to exhibit distinct liquid-crystalline alignment behaviour.
我们报告了通过使用非常小的(约 20nm)均匀微晶种子来控制形成高度单分散的圆柱形嵌段共聚物胶束(长度分散度<或=1.03;长度范围约为 200nm 至 2μm),这些种子作为可结晶的、核形成的金属嵌段共聚物单体的结晶驱动活自组装的引发剂。这种方法类似于在经典的活聚合反应中使用小的引发剂分子。通过改变单体与微晶种子的比例,可以精确控制纳米圆柱的长度。使用这种方法可获得的不同长度的高度单分散纳米圆柱的样品已显示出明显的液晶取向行为。