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oe1(光电查) - 科学论文

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?? 中文(中国)
  • Bifunctional effects of trichloro(octyl)silane modification on the performance and stability of perovskite solar cell via microscopic characterization techniques

    摘要: Passivation by small organic compounds can reduce the trap density and enhance humidity and illumination stability of perovskite solar cells (PSCs). However, the small molecule passivated on the perovskite film cannot endure harsh heat stress. Herein, we find that the trichloro(octyl)silane (TC-silane) is an excellent candidate to modify the perovskite surface and grain boundary nondestructively through the formation of heat-resistive silicone layer, leading to comprehensive improvement of efficiency and stability with low cost as well as facile fabrication. The silane is a type of solvent and can be upscaled by solution process in the device. TC- silicone can crosslink the grain boundaries through hydrolytic condensation. The crosslinking silicone can resist the moisture and heat stresses to enhance the stability. Besides, micro-photoluminescence reveals that TC-silane treatment can passivate the perovskite film and enhance the optoelectronic properties through chloride replenishment during releasing hydrogen chloride molecule in the hydrolytic reaction. By utilizing Kevin probe force microscopy, we further uncover that TC-silane forms a dipole layer to facilitate the charge separation. TC-silane passivated PSCs delivers a champion efficiency of 20.03% and remains 80% of initial efficiency for more than 800 h at 70-80% relative humidity in air and for about 80 h under 85 oC thermal stress without encapsulation.

    关键词: perovskite solar cell,microscopic characterization,silane passivation,stability,bifunctional effect

    更新于2025-09-23 15:19:57