Wilson Patrick Rj, Roschuk Tyler, Dunn Kayne, Normand Elise N, Chelomentsev Evgueni, Zalloum Othman Hy, Wojcik Jacek, Mascher Peter
Department of Engineering Physics and Centre for Emerging Device Technologies, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S4L7, Canada.
Nanoscale Res Lett. 2011 Feb 23;6(1):168. doi: 10.1186/1556-276X-6-168.
Silicon nanoclusters (Si-ncs) embedded in silicon nitride films have been studied to determine the effects that deposition and processing parameters have on their growth, luminescent properties, and electronic structure. Luminescence was observed from Si-ncs formed in silicon-rich silicon nitride films with a broad range of compositions and grown using three different types of chemical vapour deposition systems. Photoluminescence (PL) experiments revealed broad, tunable emissions with peaks ranging from the near-infrared across the full visible spectrum. The emission energy was highly dependent on the film composition and changed only slightly with annealing temperature and time, which primarily affected the emission intensity. The PL spectra from films annealed for duration of times ranging from 2 s to 2 h at 600 and 800°C indicated a fast initial formation and growth of nanoclusters in the first few seconds of annealing followed by a slow, but steady growth as annealing time was further increased. X-ray absorption near edge structure at the Si K- and L3,2-edges exhibited composition-dependent phase separation and structural re-ordering of the Si-ncs and silicon nitride host matrix under different post-deposition annealing conditions and generally supported the trends observed in the PL spectra.
对嵌入氮化硅薄膜中的硅纳米团簇(Si-ncs)进行了研究,以确定沉积和加工参数对其生长、发光特性及电子结构的影响。在具有广泛成分且使用三种不同类型化学气相沉积系统生长的富硅氮化硅薄膜中形成的Si-ncs观察到了发光现象。光致发光(PL)实验揭示了宽范围、可调节的发射,其峰值范围从近红外到整个可见光谱。发射能量高度依赖于薄膜成分,并且随退火温度和时间变化很小,退火温度和时间主要影响发射强度。在600℃和800℃下退火2秒至2小时的薄膜的PL光谱表明,在退火的最初几秒内纳米团簇快速初始形成和生长,随后随着退火时间进一步增加,纳米团簇缓慢但稳定地生长。在不同的沉积后退火条件下,Si K-和L3,2-边缘处的X射线吸收近边结构表现出与成分相关的相分离以及Si-ncs和氮化硅主体基质的结构重新排序,并且总体上支持了在PL光谱中观察到的趋势。