In this paper, cable-like PEDOT/PSS-ZnO nanowires are successfully fabricated under vacuum condi- tion by self-assembly of the PEDOT/PSS-ZnO composite initially prepared via sol-gel method. Characterized by TEM and ED...In this paper, cable-like PEDOT/PSS-ZnO nanowires are successfully fabricated under vacuum condi- tion by self-assembly of the PEDOT/PSS-ZnO composite initially prepared via sol-gel method. Characterized by TEM and EDX, the nanowire is found to have a polycrystalline ZnO inner core that is sheathed by the PEDOT/PSS blends and the nanowire has an outer diameter of ca. 100 nm. The results also indicate that the morphology of PEDOT/PSS- ZnO nanocomposite is greatly influenced by external vac- uum condition and aging time. The feasible and simple ap- proach that we have developed provides a new strategy for the synthesis of novel one-dimensional nanocomposites.展开更多
文摘In this paper, cable-like PEDOT/PSS-ZnO nanowires are successfully fabricated under vacuum condi- tion by self-assembly of the PEDOT/PSS-ZnO composite initially prepared via sol-gel method. Characterized by TEM and EDX, the nanowire is found to have a polycrystalline ZnO inner core that is sheathed by the PEDOT/PSS blends and the nanowire has an outer diameter of ca. 100 nm. The results also indicate that the morphology of PEDOT/PSS- ZnO nanocomposite is greatly influenced by external vac- uum condition and aging time. The feasible and simple ap- proach that we have developed provides a new strategy for the synthesis of novel one-dimensional nanocomposites.