Ko Yeong Hwan, Kim Myung Sub, Yu Jae Su
Department of Electronics and Radio Engineering, Kyung Hee University, 1 Seocheon-dong, Giheung-gu, Yongin-si, Gyeonggi-do, 446-701, South Korea.
Nanoscale Res Lett. 2012 Jan 5;7(1):13. doi: 10.1186/1556-276X-7-13.
We reported the enhancement of the structural and optical properties of electrochemically synthesized zinc oxide [ZnO] nanorod arrays [NRAs] using the multi-walled carbon nanotube [MWCNT]-composed seed layers, which were formed by spin-coating the aqueous seed solution containing MWCNTs on the indium tin oxide-coated glass substrate. The MWCNT-composed seed layer served as the efficient nucleation surface as well as the film with better electrical conductivity, thus leading to a more uniform high-density ZnO NRAs with an improved crystal quality during the electrochemical deposition process. For ZnO NRAs grown on the seed layer containing MWCNTs (2 wt.%), the photoluminescence peak intensity of the near-band-edge emission at a wavelength of approximately 375 nm was enhanced by 2.8 times compared with that of the ZnO nanorods grown without the seed layer due to the high crystallinity of ZnO NRAs and the surface plasmon-meditated emission enhancement by MWCNTs. The effect of the MWCNT-composed seed layer on the surface wettability was also investigated.PACS: 81.07.-b; 81.16.-c; 81.07.Pr; 61.48.De.
我们报道了使用由多壁碳纳米管(MWCNT)组成的种子层来增强电化学合成的氧化锌[ZnO]纳米棒阵列(NRA)的结构和光学性质,该种子层是通过将含有MWCNT的水性种子溶液旋涂在氧化铟锡涂层的玻璃基板上形成的。由MWCNT组成的种子层作为有效的成核表面以及具有更好导电性的薄膜,从而在电化学沉积过程中导致形成更均匀的高密度ZnO NRA,且晶体质量得到改善。对于生长在含有MWCNT(2 wt.%)的种子层上的ZnO NRA,由于ZnO NRA的高结晶度以及MWCNT介导的表面等离子体发射增强,与没有种子层生长的ZnO纳米棒相比,在波长约375 nm处的近带边发射的光致发光峰值强度提高了2.8倍。还研究了由MWCNT组成的种子层对表面润湿性的影响。
81.07.-b;81.16.-c;81.07.Pr;61.48.De。