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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Synergistic improvements in stability and performance of lead iodide perovskite solar cells incorporating salt additives
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Synergistic improvements in stability and performance of lead iodide perovskite solar cells incorporating salt additives

机译:含盐添加剂的碘化钙钛矿型铅酸钙太阳能电池稳定性和性能的协同改进

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The main issues in planar perovskite solar cells are the coverage and crystallinity of the perovskite film on the PEDOT:PSS layer. To enhance these features, we introduced alkali metal halides (salts) as additives into the perovskite precursor solution used in a two-step preparation method. These alkali metal halides chelate with Pb2+ ions and enhance the crystal growth of PbI2 films, resulting in nanostructured morphologies. The nanostructured PbI2 films promote homogeneous nucleation and larger crystallite sizes, thereby enhancing the morphology and crystallinity of the perovskite films. The alkali metal halides recrystallize the small grains and passivate the grain boundaries and interface states, allowing effective charge generation and dissociation in perovskite films. Photoluminescence measurements indicated that perovskite films prepared with salt additives featured fewer charge traps and defects. The power conversion efficiency of the device incorporating a small amount of a salt additive increased by approximately 33%-from 11.4 to 15.08%. This device was more stable than a corresponding device prepared without the additive, with only 16.5% degradation occurring over a period of 50 days.
机译:平面钙钛矿太阳能电池的主要问题是PEDOT:PSS层上钙钛矿薄膜的覆盖度和结晶度。为了增强这些功能,我们将碱金属卤化物(盐)作为添加剂引入了两步制备方法中使用的钙钛矿前体溶液中。这些碱金属卤化物与Pb2 +离子螯合并增强PbI2膜的晶体生长,从而形成纳米结构的形貌。纳米结构的PbI2薄膜可促进均匀的成核作用和较大的微晶尺寸,从而增强钙钛矿薄膜的形貌和结晶度。碱金属卤化物使小晶粒重结晶,并使晶粒边界和界面态钝化,从而在钙钛矿薄膜中产生有效的电荷并使其解离。光致发光测量表明,用盐添加剂制备的钙钛矿薄膜具有较少的电荷陷阱和缺陷。包含少量盐添加剂的设备的功率转换效率从11.4%增至15.08%,提高了约33%。该装置比没有添加剂的相应装置更稳定,在50天内仅发生了16.5%的降解。

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