标题: Type-II 量子环位置对太阳能电池的影响
Effects of Type-II Quantum Ring Layer at Different Locations in Solar cells
作者: 郑允涵
林建中
Cheng,Yun-Han
Lin, Chien-Chung
光电系统研究所
关键字: Type-II;量子环;太阳能电池;位子效应;Type-II;quantum ring;solar cell;position effect
公开日期: 2016
摘要: 本论文中,type-II 量子环被应用在太阳能电池中,用来增加红外光的吸收,并探讨量子环在不同磊晶层对太阳能电池的影响。在这次实验中,一共有三片具有量子环结构的磊晶片(p-QR,n-QR,i-QR)和一片基准片被制程并量测,就结果而言i-QR表现最佳,但i-QR对红外线的反应极弱,代表量子环的表现极差,主要原因可能发生在双倍的量子环磊晶上。相较于n-QR,p-QR 有较佳的理想因子和较强的红外线反应,主要原因可能是,p-QR的量子环比较靠近元件表面,因此能吸收较强的光,但也因为此原因,p-QR的量子环有机会吸收到可见光的部分,因此会降低红外光的转换效率,最后就实验结果,我们发现,P型参杂的量子环再主动层中,会造成元件的填充因数明显低落。如果能将上述问题解决,我们相信量子环能明显提升太阳能电池的效率。
In this thesis, type-II quantum rings are applied in the solar cell to provide possible enhanced absorption in the infrared region. The main focus is the positioning of the quantum rings among the epitaxial layers. Three wafers (p-QR, n-QR and i-QR) with quantum rings and one reference were processed and measured. Although the i-QR performs better than other quantum rings solar cells but the i-QR show low absorption in infrared band, which means the poor performance of quantum rings. Compared with n-QR, p-QR is good at the ideality factor and infrared response. From the experimental results, the p-QR has stronger IR response due to its position close to the top, but at the same time, this position can absorb visible photons as well and the overall EQE can be deteriorated. On the other hand, n-QR design (embedded p-type QR in the active region) can damage the fill factor. The i-QR might be vulnerable due to the doubled quantum ring growth, which can be observed in the poor IR response. We believe that the type-II quantum rings can be a great candidate for boosting up the solar cell efficiency if the structural design is optimized.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070358019
http://hdl.handle.net/11536/139801
显示于类别:Thesis