期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Moisture is not always bad:H_(2)O accelerates the conversion of DMAPbI_(3) intermediate to CsPbI_(3)for boosting the efficiency of carbon-based perovskite solar cells to over 16%
1
作者 Hailiang Wang Huicong Liu +6 位作者 zijing dong Xueyuan Wei Weiping Li Liqun Zhu Cheng Zhu Yang Bai Haining Chen 《Fundamental Research》 CAS CSCD 2024年第5期1110-1117,共8页
Inorganic CsPbI_(3)perovskite has exhibited great application potential in perovskite solar cells(PSCs)due to its suitable optical bandgap and high chemical stability.However,the perovskite phases of CsPbI_(3)are not ... Inorganic CsPbI_(3)perovskite has exhibited great application potential in perovskite solar cells(PSCs)due to its suitable optical bandgap and high chemical stability.However,the perovskite phases of CsPbI_(3)are not stable at room temperature,where they transition to non-perovskite phases.Humidity or water has been thought to be the primary factor inducing this phase transition,which should be avoided throughout the procedure of film and device processing.Surprisingly,the present study indicates that preparing a precursor solution in humid air is beneficial to the growth of high-quality CsPbI_(3)perovskite to enhance device performance.It is demonstrated that the incorporation of H2O in the precursor solution from humid air or by intentional addition significantly changes the composition of coordination compounds and increases the amount of low iodine coordination complexes.As a result,the crystallization of dimethylammonium lead iodide(DMAPbI_(3))intermediate is suppressed well,which accelerates its subsequent conversion to CsPbI_(3)perovskite.Consequently,an oriented CsPbI_(3)perovskite film with improved crystallinity and lower defect density is obtained.Most importantly,carbon-based PSCs(C-PSCs)based on the CsPbI_(3)perovskite film achieve an efficiency of 16.05%,a new record for inorganic C-PSCs. 展开更多
关键词 Inorganic perovskite CsPbI_(3) Carbon electrode Solar cells Water
原文传递
二甲基亚砜:一种沉积无机CsPbI3钙钛矿的有前景的溶剂 被引量:1
2
作者 王海亮 刘慧从 +6 位作者 董紫荆 魏学源 李卫平 朱立群 朱城 白阳 陈海宁 《Science Bulletin》 SCIE EI CAS CSCD 2023年第2期192-202,M0004,共12页
无机CsPbI3钙钛矿具有适宜的带隙和优异的化学稳定性,是一种重要的光伏材料.然而,由于其钙钛矿相的稳定性较低且对溶剂敏感,因此沉积高质量CsPbI3钙钛矿薄膜仍是一个挑战.到目前为止,绝大部分高性能钙钛矿太阳能电池(PSCs)中使用的CsPbI... 无机CsPbI3钙钛矿具有适宜的带隙和优异的化学稳定性,是一种重要的光伏材料.然而,由于其钙钛矿相的稳定性较低且对溶剂敏感,因此沉积高质量CsPbI3钙钛矿薄膜仍是一个挑战.到目前为止,绝大部分高性能钙钛矿太阳能电池(PSCs)中使用的CsPbI3钙钛矿薄膜都采用有毒性的N,N-二甲基甲酰胺作为主要溶剂,很大程度上限制了该类电池的工业化生产.二甲基亚砜(DMSO)由于对环境友好且具有良好的配位能力,是一种较为理想的溶剂,但目前DMSO作为溶剂沉积的CsPbI3钙钛矿薄膜质量较差,制备的电池性能较低.为此,本文首先揭示了生长过程中DMSO加合物的形成是限制CsPbI3钙钛矿薄膜质量的主要原因.通过引入真空处理过程,将加合物中的DMSO分子去除来诱导生成DMAPbI3(DMA=(CH3)2NH2+)中间体,经退火后,中间体转变为结晶度强、取向性高、缺陷密度低、均匀性好的CsPbI3钙钛矿薄膜.使用该CsPbI3钙钛矿薄膜作为光吸收层后,基于碳电极的无空穴传输层PSCs获得了16.7%的转换效率,是目前该类电池转换效率的新纪录. 展开更多
关键词 钙钛矿太阳能电池 电池转换效率 光伏材料 钙钛矿薄膜 二甲基亚砜 缺陷密度 真空处理 碳电极
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部