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Synthesis, characterization and photovoltaic behavior of platinum acetylide polymers with electron-deficient 9,10-anthraquinone moiety

机译:缺电子的9,10-蒽醌部分的乙炔铂铂聚合物的合成,表征和光伏行为

摘要

A new class of soluble, solution-processable platinum(II) acetylide polymers functionalized with electron-deficient 9,10-anthraquinone spacer and their corresponding diplatinum model complexes were synthesized and characterized. The organometallic polymers exhibit good thermal stability and show low-energy broad absorption bands in the visible region. The effect of the presence of thiophene rings along the polymer chain on the optical and photovoltaic properties of these metallated materials was examined. The low-bandgap polymer with thiophene-anthraquinone-thiophene (donor-acceptor- donor) fragment can serve as a good electron donor for fabricating bulk heterojunction polymer solar cells by blending with a methanofullerene electron acceptor. At the same donor:acceptor blend ratio of 1:4, the light-harvesting ability and solar cell efficiency notably increase when the anthraquinone ring is sandwiched by two thiophene units. Photoexcitation of such polymer solar cells results in a photoinduced electron transfer from the π-conjugated metallopolymer to [6,6]-phenyl C61-butyric acid methyl ester with power conversion efficiency up to ∼ 0.35%. For safety concern, these metallopolymers were also tested for possible cytotoxicity and they do not show significant cytotoxic activity on human liver derived cells and skin keratinocytes at reasonable doses, rendering these functional materials safe to use in practical devices.
机译:合成并表征了新型的可溶的,可溶液加工的,具有电子缺陷的9,10-蒽醌间隔基官能化的乙炔铂(II)聚合物及其相应的二铂模型配合物。有机金属聚合物表现出良好的热稳定性,并在可见光区域显示出低能量的宽吸收带。检验了沿着聚合物链的噻吩环的存在对这些金属化材料的光学和光伏特性的影响。具有噻吩-蒽醌-噻吩(给体-受体-给体)片段的低带隙聚合物可以通过与甲基富勒烯电子受体共混来用作制造本体异质结聚合物太阳能电池的良好电子给体。在相同的供体:受体混合比为1:4的情况下,当蒽醌环被两个噻吩单元夹在中间时,集光能力和太阳能电池效率会显着提高。这种聚合物太阳能电池的光激发导致光诱导的电子从π共轭金属聚合物转移到[6,6]-苯基C61-丁酸甲酯,功率转换效率高达〜0.35%。出于安全考虑,还对这些金属聚合物进行了可能的细胞毒性测试,并且它们在合理剂量下对人肝来源的细胞和皮肤角质形成细胞没有显示出明显的细胞毒性活性,从而使这些功能性材料在实际设备中安全使用。

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