期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Solution-Processed Titanium Chelate Used as Both Electrode Modification Layer and Intermediate Layer for Efficient Inverted Tandem Polymer Solar Cells 被引量:3
1
作者 Zhenzhen Shi Hao Liu +6 位作者 Lixing Xia Yiming Bai Fuzhi Wang Bing Zhang Tasawar Hayat Ahmed Alsaedi CandZhan'ao Tan 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2018年第3期194-198,共5页
ABSTRACT Organic polymer solar cells (PSCs) have attracted increasing attention due to light weight, low cost, flexibility and roll-to-roll manufacturing. However, the limited light harvest range of the photoactive ... ABSTRACT Organic polymer solar cells (PSCs) have attracted increasing attention due to light weight, low cost, flexibility and roll-to-roll manufacturing. However, the limited light harvest range of the photoactive layer greatly restrains the power conversion efficiency (PCE) enhancement. In order to expand the light absorption range and further enhance the PCE of the PSCs, tandem structures have been designed and demonstrated. In tandem solar cell, the intermediate layer (IML) plays a critical role in physically and electrically connection of the two subcells. Herein, we apply titanium (diisopropoxide) bis(2,4-pentanedionate) (TIPD) as both electrode modification layer and intermediate layer to investigate the feasibility in inverted tandem polymer solar cells. The same photoactive layers of PTB7-Th:PC71BM are adopted in both front and rear subcells to simplify the evaluation of effectiveness of TIPD layer in tandem structures. By modulating the treatment condition of IML and the thickness of photoactive layer, efficient inverted tandem PSCs have been achieved with minimized voltage loss and excellent charge transportation, giving a best Voc of 1.54 V, which is almost two times that of the single bulk heterojunction (BHJ)-PSC (0.78 V) and an enhanced PCE up to 8.11%. 展开更多
关键词 polymer solar cells titanium (diisopropoxide bis(2 4-pentanedionate) intermediate layer tandem structure
原文传递
以醇溶性钛螯合物为阴极修饰层的高效聚合物太阳能电池 被引量:3
2
作者 王福芝 孙刚 谭占鳌 《光电子.激光》 EI CAS CSCD 北大核心 2014年第4期658-663,共6页
以醇溶性的钛螯合物乙酰丙酮氧钛(TOPD)为电子收集层,聚3-己基噻吩(P3HT)为电子给体,富勒烯衍生物(PC60BM或PC70BM)为电子受体,制备了高效本体异质结聚合物太阳电池。TOPD膜是通过旋涂TOPD异丙醇溶液,然后在空气中经60℃热退火15min得... 以醇溶性的钛螯合物乙酰丙酮氧钛(TOPD)为电子收集层,聚3-己基噻吩(P3HT)为电子给体,富勒烯衍生物(PC60BM或PC70BM)为电子受体,制备了高效本体异质结聚合物太阳电池。TOPD膜是通过旋涂TOPD异丙醇溶液,然后在空气中经60℃热退火15min得到。通过优化TOPD层厚度及器件制备工艺,显著提高了聚合物太阳能电池的短路电流。通过引入TOPD电子收集层,使基于P3HT:PC60BM活性层的太阳能电池在AM1.5G、100mW·cm-2的光照条件下光-电转换效率(PCE)由2.72%提高到3.65%。用PC70BM代替PC60BM,可以使电池的PCE进一步提高到3.96%。PCE的提升主要归结于TOPD的层的引入可以提高电子传输速率并且可以降低电池的串联电阻。除此之外,TOPD替代常用的低功率金属Ca作为阴极修饰材料,可以有效提高聚合物质太阳能电池器件的工作稳定性。 展开更多
关键词 乙酰丙酮氧钛(TOPD) 聚合物太阳电池 电子收集层 溶液加工
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部