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Molecular Engineering of Organic Sensitizers for Solar Cell Applications

机译:太阳能电池用有机增敏剂的分子工程

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摘要

Novel organic sensitizers comprising donor,electron-conducting,and anchoring groups were engineered at molecular level and synthesized.The functionalized unsymmetrical organic sensitizers 3-{5-[N,N-bis(9,9-dimethylfluorene-2-yl)phenyl]-thiophene-2-yl}-2-cyano-acrylic acid (JK-1) and 3-{5'-[N,N-bis-(9,9-dimethylfluorene-2-yl)phenyl]-2,2'-bisthiophene-5-yl}-2-cyano-acrylic acid (JK-2),upon anchoring onto TiO_2 film,exhibit unprecedented incident photon to current conversion efficiency of 91%.The photovoltaic data using an electrolyte having composition of 0.6 M M-methyl-N-butyl imidiazolium iodide,0.04 M iodine,0.025 M LiI,0.05 M guanidinium thiocyanate,and 0.28 M tert-butylpyridine in a 15/85 (v/v) mixture of valeronitrile and acetonitrile revealed a short circuit photocurrent density of 14.0 +- 0.2 mA/cm~2,an open circuit voltage of 753 +- 10 mV,and a fill factor of 0.76 +- 0.02,corresponding to an overall conversion efficiency of 8.01 % under standard AM 1.5 sunlight.DFT/TDDFT calculations have been performed on the two organic sensitizers to gain insight into their structural,electronic,and optical properties.Our results show that the cyanoacrylic acid groups are essentially coplanar with respect to the thiophene units,reflecting the strong conjugation across the thiophene-cyanoacrylic groups.Molecular orbitals analysis confirmed the experimental assignment of redox potentials,while TDDFT calculations allowed assignment of the visible absorption bands.
机译:在分子水平上设计并合成了包含供体,电子导电和锚定基团的新型有机敏化剂。功能化的不对称有机敏化剂3- {5- [N,N-双(9,9-二甲基芴-2-基)苯基] -噻吩-2-基} -2-氰基丙烯酸(JK-1)和3- {5'-[N,N-双-(9,​​9-二甲基芴-2-基)苯基] -2,2锚定在TiO_2薄膜上的'-双噻吩-5-基} -2-氰基丙烯酸(JK-2)表现出空前的入射光子-电流转换效率达到91%。使用组成为0.6 M的电解质的光伏数据M-甲基-N-丁基碘咪唑鎓,0.04 M碘,0.025 M LiI,0.05 M硫氰酸胍和0.28 M叔丁基吡啶在戊腈和乙腈的15/85(v / v)混合物中显示出短路光电流密度DFT / TDDFT为14.0 +-0.2 mA / cm〜2,开路电压为753 +-10 mV,填充系数为0.76 +-0.02,对应于标准AM 1.5阳光下的整体转换效率为8.01%。计算对这两种有机敏化剂进行了阳离子修饰,以深入了解其结构,电子和光学性质。我们的结果表明,氰基丙烯酸基团相对于噻吩单元基本共面,反映了整个噻吩-氰基丙烯酸基团的强共轭作用分子轨道分析证实了氧化还原电势的实验分配,而TDDFT计算则允许可见吸收带的分配。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2006年第51期|p.16701-16707|共7页
  • 作者单位

    Contribution from the Department of Chemistry,Korea University,Jochiwon,Chungnam 339-700,Korea,Laboratory for Photonics and Interfaces,Station 6,Institute of Chemical Sciences and Engineering,School of Basic Sciences,Swiss Federal Institute of Techno;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:23:09

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