Optimization of highly transparent DMD-films for application in perovskite solar cell

Author:

Ding YiHanORCID,Du ChaoLingORCID,Lei MingXin,Zhang XiaoYangORCID,Xie WeiWei,Shen HongLie,Zhang XueJinORCID,Xia SiHao,Shi DaNing

Abstract

Abstract Different kinds of Dielectric/Metal/Dielectric (DMD) films have been broadly adopted as transparent electrodes of solar cells. It is crucial to simultaneously predict the D, M material and thickness which is hard accessed either by experiments or manually simulations. In this study, we employed a co-simulation approach involving transfer matrix method (TMM) and a genetic algorithm (GA) to solve this problem. It is revealed that DMD films of WO3/Ag/WO3 and AZO/Ag/AZO provide an averaged transmittance as high as ∼90% in 300–800 nm, which are expected to providing excellent front transparent electrodes for perovskite solar cells (PSCs). On this basis, 46.6% (11.8%) and 45.4% (11.3%) increment upon photocurrent and power conversion efficiency were observed compared with that of Ag (ITO) based PSC counterparts. The presented work is highly insightful for the design and application of DMD transparent electrodes, which facilitates the material and thickness of DMD films selection for future transparent electrodes of PSC.

Funder

National Natural Science Foundation of China

National Laboratory of Solid State Microstructures of NanJing University

Publisher

IOP Publishing

Reference31 articles.

1. Progress in solar PV technology: research and achievement;Tyagi;Renew. Sustain. Energy Rev.,2013

2. A review of thin film solar cell technologies and challenges;Lee;Renew. Sustain. Energy Rev.,2017

3. The future of flexible organic solar cells;Fukuda;Adv. Energy Mater.,2020

4. Progress and prospects for ultrathin solar cells;Massiot;Nat. Energy,2020

5. High-efficiency perovskite solar cells;Kim;Chem. Rev.,2020

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