Stratakis E, Kymakis E, Spanakis E, Tzanetakis P, Koudoumas E
Institute of Electronic Structure and Laser (IESL), Foundation for Research and Technology-Hellas (FORTH), Heraklion, 711 10 Crete, Greece.
Phys Chem Chem Phys. 2009 Jan 28;11(4):703-9. doi: 10.1039/b813198h.
The results of electron field emission from single walled carbon nanotubes (SWCNTs) mats deposited on different composite films of SWCNTs and poly(3-octylthiophene) (P3OT) semiconducting polymer are presented. Three different structures were tested: (a) dense and sparse SWCNT mats on n+ -Si; (b) SWCNT mats on composite films with different SWCNT-P3OT ratios; (c) composite films with different SWCNT-P3OT ratios on n+ -Si. The experiments show that there is a critical SWCNT-P3OT concentration in which the field emission stability of SWCNT mats is remarkably improved with a small reduction in the emission threshold compared to the optimum pristine SWCNT film. The contribution of the composite film morphology as well as the role of polymer-nanotube interaction on the emission performance are evaluated. The physical mechanism behind the stability of composite field emitters is also discussed.
本文展示了沉积在单壁碳纳米管(SWCNT)与聚(3-辛基噻吩)(P3OT)半导体聚合物的不同复合薄膜上的SWCNT垫的电子场发射结果。测试了三种不同结构:(a)n + -Si上的致密和稀疏SWCNT垫;(b)具有不同SWCNT-P3OT比例的复合薄膜上的SWCNT垫;(c)n + -Si上具有不同SWCNT-P3OT比例的复合薄膜。实验表明,存在一个临界SWCNT-P3OT浓度,在该浓度下,与最佳原始SWCNT薄膜相比,SWCNT垫的场发射稳定性显著提高,发射阈值略有降低。评估了复合薄膜形态的贡献以及聚合物-纳米管相互作用对发射性能的作用。还讨论了复合场发射体稳定性背后的物理机制。