Hawker Craig J, Wooley Karen L
Materials Research Laboratory, Materials Department and Department of Chemistry, University of California, Santa Barbara, CA 93106, USA.
Science. 2005 Aug 19;309(5738):1200-5. doi: 10.1126/science.1109778.
Several recent conceptual advances, which take advantage of the design criteria and practical techniques of molecular-level control in organic chemistry, allow preparation of well-defined polymers and nanostructured materials. Two trends are clear: the realization that synthesis of complex macromolecules poses major challenges and opportunities and the expectation that such materials will exhibit distinctive properties and functions. Polymer synthesis methods now being developed will yield well-defined synthetic macromolecules that are capable of mimicking many of the features of proteins (for example, three-dimensional folded structure) and other natural materials. These macromolecules have far-reaching potential for the study of molecular-level behavior at interfaces, in thin films, and in solution, while also enabling the development of encapsulation, drug-delivery, and nanoscale-patterning technologies.
最近的几项概念进展利用了有机化学中分子水平控制的设计标准和实用技术,使得制备结构明确的聚合物和纳米结构材料成为可能。有两个趋势很明显:一是认识到复杂大分子的合成带来了重大挑战和机遇,二是期望此类材料将展现出独特的性质和功能。目前正在开发的聚合物合成方法将产生能够模拟蛋白质许多特征(例如三维折叠结构)以及其他天然材料的结构明确的合成大分子。这些大分子在研究界面、薄膜和溶液中的分子水平行为方面具有深远潜力,同时还能推动封装、药物递送和纳米级图案化技术的发展。