4.6 Article

Effects of ambient humidity on the optimum annealing time of mixed-halide Perovskite solar cells

期刊

NANOTECHNOLOGY
卷 28, 期 11, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.1088/1361-6528/aa5bec

关键词

humidity; annealing time; photovoltaic performance; Perovskite solar cells

资金

  1. UK Engineering and Physical Sciences Research Council (EPSRC) through the University of Surrey's Centre for Doctoral Training in MiNMaT [EP/G037388]
  2. DZP Technologies Ltd, Cambridge, UK
  3. Royal Commission for the Exhibition of 1851 through an Industrial Fellowship
  4. Leverhulme Trust [RPG-2014-312]
  5. Engineering and Physical Sciences Research Council [1364180] Funding Source: researchfish

向作者/读者索取更多资源

Mixed halide Perovskite solar cells (PSCs) are commonly produced by depositing PbCl2 and CH3NH3I from a common solvent followed by thermal annealing, which in an up-scaled manufacturing process is likely to take place under ambient conditions. However, it has been reported that, similar to the effects of thermal annealing, ambient humidity also affects the crystallisation behaviour and subsequent growth of the Perovskite films. This implies that both of these factors must be accounted for in solar cell production. In this work, we report for the first time the correlation between the annealing time, relative humidity (RH) and device performance for inverted, mixed halide CH3NH3PbI(3-x) Cl-x PSCs with active area approximate to 1 cm(2). We find a trade-off between ambient humidity and the required annealing time to produce efficient solar cells, with low humidities needing longer annealing times and vice-versa. At around 20% RH, device performance weakly depends on annealing time, but at higher (30%-40% RH) or lower (0%-15% RH) humidities it is very sensitive. Processing in humid environments is shown to lead to the growth of both larger Perovskite grains and larger voids; similar to the effect of thermal annealing, which also leads to grain growth. Therefore, samples which are annealed for too long under high humidity show loss of performance due to low open circuit voltage caused by an increased number of shunt paths. Based on these results it is clear that humidity and annealing time are closely interrelated and both are important factors affecting the performance of PSCs. The findings of this work open a route for reduced annealing times to be employed by control of humidity; critical in roll-to-roll manufacture where low manufacturing time is preferred for cost reductions.

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