The 66th JSAP Spring Meeting, 2019

Presentation information

Symposium (Oral)

Symposium » Colloidal Quantum Dots: Fundamentals and Applications

[10p-M111-1~9] Colloidal Quantum Dots: Fundamentals and Applications

Sun. Mar 10, 2019 1:30 PM - 5:40 PM M111 (H111)

Tegi Kim(Osaka City University), Yoshihiro Iwasa(The Univ. of Tokyo)

2:30 PM - 2:45 PM

[10p-M111-3] Lead Selenide Colloidal Quantum Dot Solar Cells Achieving High Open-Circuit Voltage with One-Step Deposition Strategy

〇(P)Yaohong Zhang1, Guohua Wu2, Chao Ding1, Feng Liu1, Zhigang Zou3, Shuzi Hayase4, Qing Shen1 (1.Univ. of Electro-Commun., 2.Shaanxi Normal Univ., 3.Nanjing Univ., 4.Kyushu Inst. Tech.)

Keywords:quantum dot solar cells, PbSe, one step deposition

Lead selenide (PbSe) colloidal quantum dots (CQDs) are considered to be a strong candidate for high-efficiency colloidal quantum dot solar cells (CQDSCs) due to its efficient multiple exciton generation. However, currently, even the best PbSe CQDSCs can only display open-circuit voltage (Voc) about 0.530 V. Here, we introduce a solution-phase ligand exchange method to prepare PbI2-capped PbSe (PbSe-PbI2) CQD inks, and for the first time, the absorber layer of PbSe CQDSCs was deposited in one step by using this PbSe-PbI2 CQD inks. One-step-deposited PbSe CQDs absorber layer exhibits fast charge transfer rate, reduced energy funneling, and low trap assisted recombination. The champion large-area (active area is 0.35 cm2) PbSe CQDSCs fabricated with one-step PbSe CQDs achieve a power conversion efficiency (PCE) of 6.0% and a Voc of 0.616 V, which is the highest Voc among PbSe CQDSCs reported to date.