Cavendish Laboratory, University of Cambridge , JJ Thomson Avenue, Cambridge CB3 0HE, United Kingdom.
Nano Lett. 2013 Sep 11;13(9):4499-504. doi: 10.1021/nl4024275. Epub 2013 Aug 21.
Well-ordered hybrid materials with a 10 nm length scale are highly desired. We make use of the natural length scale (typically 10-15 nm) of the alternating crystalline and amorphous layers that are generally found in semicrystalline polymers to direct the growth of a semiconducting metal oxide. This approach is exemplified with the growth of ZnO within a carboxylic acid end-functionalized poly(3-hexylthiophene) (P3HT-COOH). The metal-oxide precursor vapors diffuse into the amorphous parts of the semicrystalline polymer so that sheets of ZnO up to 0.5 μm in size can be grown. This P3HT-ZnO nanostructure further functions as a donor-acceptor photovoltaic system, with length scales appropriate for charge photogeneration.
具有 10nm 长度尺度的有序杂化材料是人们所高度期望的。我们利用半晶态聚合物中通常存在的交替结晶和非晶层的自然长度尺度(通常为 10-15nm)来引导半导体金属氧化物的生长。在羧酸官能化聚(3-己基噻吩)(P3HT-COOH)内生长 ZnO 就是一个例子。金属氧化物前体蒸气扩散到半晶态聚合物的非晶部分,从而可以生长高达 0.5μm 尺寸的 ZnO 片。这种 P3HT-ZnO 纳米结构进一步充当施主-受主光伏系统,其长度尺度适合电荷光生成。