首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Balancing photovoltaic parameters to enhance device performance of fluorene-fused heptacyclic small-molecule acceptors through varying terminal groups and polymer donors
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Balancing photovoltaic parameters to enhance device performance of fluorene-fused heptacyclic small-molecule acceptors through varying terminal groups and polymer donors

机译:平衡光伏参数通过不同的末端组和聚合物供体增强芴融合的小分子受体的装置性能

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摘要

Balancing photovoltaic parameters is very challenging to optimize the device performance of nonfullerene small-molecule acceptor (SMA)-based polymer solar cells (PSCs). We herein employed electron-withdrawing fluorinated or chlorinated 1,1-dicyanomethylene-3-indanone (ICF or ICCl) as the terminal acceptor (A) group to develop two acceptor-donor-acceptor (A-D-A) SMAs, DTCFO-ICF and DTCFO-ICCl, with an electron-rich fluorene-fused dithienocyclopentafluorene as the identical central donor (D) core. Compared with the nonhalogenated counterpart (DTCFO-IC), the two halogenated SMAs possessed a red-shifted absorption spectrum, reduced optical bandgap, and increased charge carrier mobility, but these were accompanied by down-shifted HOMO and LUMO levels, especially for the chlorinated molecule (DTCFO-ICCl). Accordingly, with respect to DTCFO-IC, PSCs based on the two halogenated SMAs with polymer PBDB-T as a donor exhibited an improved J(sc), but a dropped V-oc, thus leading to a commensurate power conversion efficiency (PCE) of 6.80% for DTCFO-ICF and an increased PCE of 8.55% for DTCFO-ICCl. To further improve the device performance by means of balancing photovoltaic parameters, polymer PBDB-TF with a lower-lying HOMO level relative to PBDB-T was used to replace PBDB-T as the donor. The PCEs of PBDB-TF-based PSCs were further improved mainly due to the significantly enhanced V-oc. Importantly, the DTCFO-ICCl-based PSCs achieved a high PCE of up to 11.03% along with an increased V-oc (0.93 V), a further increased J(sc) (18.80 mA cm(-2)), and almost retained FF (63.1%). The enhanced device performance could be attributed to better charge transport and collection abilities, less charge recombination and more optimal active layer morphology. These results argue that combining the halogenation on the A group of an A-D-A acceptor and variation of the paired polymer donor could be an effective strategy to enhance the device efficiency by balancing photovoltaic parameters.
机译:平衡光伏参数对于优化基于非富勒烯小分子受体(SMA)的聚合物太阳能电池(PSC)的器件性能非常具有挑战性。我们在此使用吸电子氟化或氯化1,1-二氰亚甲基-3-茚二酮(ICF或ICCl)作为末端受体(A)基团来开发两个受体-供体-受体(A-D-A)SMAs,DTCFO-ICF和DTCFO-ICCl,其中富电子芴熔融二硫环五芴作为相同的中心供体(D)核心。与非卤化对应物(DTCFO-IC)相比,两种卤化SMA具有红移的吸收光谱、减少的光学带隙和增加的电荷载流子迁移率,但这些都伴随着均聚物和LUMO能级的下移,尤其是对于氯化分子(DTCFO-ICCl)。因此,对于DTCFO-IC,基于两种卤化SMA的PSC(以聚合物PBDB-T为供体)表现出改善的J(sc),但降低了V-oc,从而导致DTCFO-ICF的相应功率转换效率(PCE)为6.80%,DTCFO-ICCl的PCE增加8.55%。为了通过平衡光伏参数进一步提高器件性能,使用了相对PBDB-T具有较低HOMO水平的聚合物PBDB-TF来取代PBDB-T作为施主。PBDB-TF基PSC的PCE进一步改善,主要是因为V-oc显著增强。重要的是,基于DTCFO ICCl的PSC实现了高达11.03%的PCE,同时V-oc(0.93 V)增加,J(sc)(18.80 mA-cm(-2))进一步增加,几乎保留了FF(63.1%)。器件性能的提高可归因于更好的电荷传输和收集能力、更少的电荷复合和更优化的有源层形态。这些结果表明,将A-D-A受体A群上的卤化反应与成对聚合物供体的变化相结合,可能是通过平衡光伏参数来提高器件效率的有效策略。

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    Xiangtan Univ Key Lab Green Organ Synth &

    Applicat Hunan Prov Key Lab Environmentally Friendly Chem &

    Applicat Minist Educ Coll Chem Xiangtan 411105 Peoples R China;

    Xiangtan Univ Key Lab Green Organ Synth &

    Applicat Hunan Prov Key Lab Environmentally Friendly Chem &

    Applicat Minist Educ Coll Chem Xiangtan 411105 Peoples R China;

    Xiangtan Univ Key Lab Green Organ Synth &

    Applicat Hunan Prov Key Lab Environmentally Friendly Chem &

    Applicat Minist Educ Coll Chem Xiangtan 411105 Peoples R China;

    Xiangtan Univ Key Lab Green Organ Synth &

    Applicat Hunan Prov Key Lab Environmentally Friendly Chem &

    Applicat Minist Educ Coll Chem Xiangtan 411105 Peoples R China;

    Xiangtan Univ Key Lab Green Organ Synth &

    Applicat Hunan Prov Key Lab Environmentally Friendly Chem &

    Applicat Minist Educ Coll Chem Xiangtan 411105 Peoples R China;

    Xiangtan Univ Key Lab Green Organ Synth &

    Applicat Hunan Prov Key Lab Environmentally Friendly Chem &

    Applicat Minist Educ Coll Chem Xiangtan 411105 Peoples R China;

    Xiangtan Univ Key Lab Green Organ Synth &

    Applicat Hunan Prov Key Lab Environmentally Friendly Chem &

    Applicat Minist Educ Coll Chem Xiangtan 411105 Peoples R China;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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