标题: | 利用超宽频激发探测光谱研究奈米粒子提升铜铟镓硒薄膜太阳能电池之研究 Harnessing nano-particles on thin film CIGS solar cells studied by ultrabroadband pump-probe spectroscopy |
作者: | 李嘉兴 Li, Jia-Xing 吴光雄 电子物理系所 |
关键字: | 超宽频激发探测光谱;ultrabroadband pump-probe spectroscopy |
公开日期: | 2015 |
摘要: | 本研究利用超宽频激发探测光谱研究奈米粒子提升铜铟镓硒薄膜太阳能电池之研究。一个是利用金属奈米粒子的的特性─表面电浆共振(Surface Plasmon Resonance),另一个则是利用硒化镉量子点的光子向下转换(photon down-conversion)机制,达成铜铟镓硒薄膜太阳能电池的效率提升。 在这个实验中,我们将金奈米粒子置于铜铟镓硒薄膜上,并研究其薄膜表面的超快载流子动力学。通过超宽激发 - 探测光谱分析,证实由表面电浆效应的物理机制,使得表面电浆-铜铟镓硒薄膜具有强的光转换能力,并且我们也由理论计算与我们的实验相对应,表面电浆效应确实强化了电子电洞对的产生。而在硒化镉量子点铜铟镓硒太阳能电池,由外部量子效率观察,证实效率由光子向下转换机制得到提升,这一结果表明金奈米颗粒与奈米晶粒的掺入,是一个具潜力的方法来强化铜铟镓硒太阳能电池的光转换效率。 In this study, we have employed the ultrabroadband pump-probe spectroscopy to investigate the enhancement of efficiency in CIGS thin film solar cells via nanoparticles. Using the plasmonic effect of gold nano-partilce is an approach to improve the efficiency of CIGS solar cells. Another way is utilizing the down-shifting effect of CdSe quantum dots to enhance the photocurrent. We have performed the ultrabroadband femtosecond pump-probe spectroscopy of CuIn1-xGaxSe2 (CIGS) thin films with and without Au nanoparticles (NPs) incorporation, and elaborately analyzed the lifetimes and zero momentum for the hot carrier relaxation. The signals of enhanced photobleach (PB) and waned photoinduced absorption (PIA) attributed to surface plasmon resonance (SPR) of Au NPs were observed in the transient differential absorption spectrum. This result has suggested the carriers can be considerably excited from ground state to lower energy level. The improvements of electrical transport by suppressing the surface recombination of photoinduced carriers via enhanced local electromagnetic field (LEMF) was also confirmed by extracted hot carrier lifetime and calculated electromagnetic field distribution. Finally, the theoretical calculation for resonant energy transfer (RET)-induced enhancement in probability of exciting electron-hole pairs was conducted and the result is well corresponding to the enhanced PB peak of transient differential absorption in plasmonic CIGS. In CdSe quantum dots CIGS solar cells was observed by an external quantum efficiency, we confirmed the success of the photon down conversion mechanism to enhance optical conversion efficiency. These result has suggested that Surface Plasma Resonance and photon down-conversion mechanism are viable approachs to boosting high-efficiency CIGS solar cells. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070252034 http://hdl.handle.net/11536/127235 |
显示于类别: | Thesis |