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Self-assembled monolayer hole-transporting materials stabilize perovskite solar cells
Matter ( IF 17.3 ) Pub Date : 2024-12-04 , DOI: 10.1016/j.matt.2024.10.009 Xueqin Ran, Jianbing Zhu, Yucheng Li, Biyun Ren, Lei Yang, Yonghua Chen
Matter ( IF 17.3 ) Pub Date : 2024-12-04 , DOI: 10.1016/j.matt.2024.10.009 Xueqin Ran, Jianbing Zhu, Yucheng Li, Biyun Ren, Lei Yang, Yonghua Chen
The development of active life for PSCs remains stagnant ascribing to the unstable structure of self-assembled monolayer hole-transporting materials (SAMHTMs) with heteroatom substitution. Xue and co-workers introduced a chemical inert and extensive delocalized structure into the rigid self-assembled molecule Py3, which greatly increased the PCE and long-term stability of PSCs.
中文翻译:
自组装的单层空穴传输材料稳定钙钛矿太阳能电池
PSC 活性寿命的发展仍然停滞不前,这归因于具有杂原子取代的自组装单层空穴传输材料 (SAMHTM) 的不稳定结构。Xue 及其同事在刚性自组装分子 Py3 中引入了一种化学惰性和广泛的离域结构,这大大提高了 PSC 的 PCE 和长期稳定性。
更新日期:2024-12-04
中文翻译:
自组装的单层空穴传输材料稳定钙钛矿太阳能电池
PSC 活性寿命的发展仍然停滞不前,这归因于具有杂原子取代的自组装单层空穴传输材料 (SAMHTM) 的不稳定结构。Xue 及其同事在刚性自组装分子 Py3 中引入了一种化学惰性和广泛的离域结构,这大大提高了 PSC 的 PCE 和长期稳定性。