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首页> 外文期刊>Chemistry: A European journal >Constructing organic D-A-π-a-featured sensitizers with a quinoxaline unit for high-efficiency solar cells: The effect of an auxiliary acceptor on the absorption and the energy level alignment
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Constructing organic D-A-π-a-featured sensitizers with a quinoxaline unit for high-efficiency solar cells: The effect of an auxiliary acceptor on the absorption and the energy level alignment

机译:用喹喔啉单元构建有机D-A-π-a功能敏化剂,用于高效太阳能电池:辅助受体对吸收和能级排列的影响

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摘要

Four organic D-A-π-A-featured sensitizers (TQ1, TQ2, IQ1, and IQ2) have been studied for high-efficiency dye-sensitized solar cells (DSSCs). We employed an indoline or a triphenylamine unit as the donor, cyanoacetic acid as the acceptor/anchor, and a thiophene moiety as the conjugation bridge. Additionally, an electron-withdrawing quinoxaline unit was incorporated between the donor and the π-conjugation unit. These sensitizers show an additional absorption band covering the broad visible range in solution. The contribution from the incorporated quinoxaline was investigated theoretically by using DFT and time-dependent DFT. The incorporated low-band-gap quinoxaline unit as an auxiliary acceptor has several merits, such as decreasing the band gap, optimizing the energy levels, and realizing a facile structural modification on several positions in the quinoxaline unit. As demonstrated, the observed additional absorption band is favorable to the photon-to-electron conversion because it corresponds to the efficient electron transitions to the LUMO orbital. Electrochemical impedance spectroscopy (EIS) Bode plots reveal that the replacement of a methoxy group with an octyloxy group can increase the injection electron lifetime by a factor of 2.4. IQ2 and TQ2 can perform well without any co-adsorbent, successfully suppress the charge recombination from TiO _2 conduction band to I _3 ~- in the electrolyte, and enhance the electron lifetime, resulting in a decreased dark current and enhanced open circuit voltage (V _(oc)) values. By using a liquid electrolyte, DSSCs based on dye IQ2 exhibited a broad incident photon-to-current conversion efficiency (IPCE) action spectrum and high efficiency (·=8.50 %) with a short circuit current density (J _(sc)) of 15.65 mA cm ~(-2), a V _(oc) value of 776 mV, a fill factor (FF) of 0.70 under AM 1.5 illumination (100 mW cm ~(-2)). Moreover, the overall efficiency remained at 97 % of the initial value after 1000 h of visible-light soaking.
机译:已经研究了四种有机D-A-π-A功能敏化剂(TQ1,TQ2,IQ1和IQ2)用于高效染料敏化太阳能电池(DSSC)。我们使用二氢吲哚或三苯胺单元作为供体,使用氰基乙酸作为受体/锚,并使用噻吩部分作为共轭桥。另外,在给体和π共轭单元之间结合了吸电子喹喔啉单元。这些敏化剂在溶液的可见范围内显示出额外的吸收带。通过使用DFT和时间依赖性DFT,从理论上研究了掺入的喹喔啉的贡献。结合的低带隙喹喔啉单元作为辅助受体具有多个优点,例如减小带隙,优化能级以及在喹喔啉单元中的多个位置上实现容易的结构修饰。如图所示,观察到的附加吸收带有利于光子到电子的转换,因为它对应于向LUMO轨道的有效电子跃迁。电化学阻抗谱(EIS)的波德图显示,用辛氧基取代甲氧基可以使注入电子寿命延长2.4倍。 IQ2和TQ2可以在没有任何共吸附剂的情况下表现良好,可以成功抑制电解质中TiO _2导带到I _3〜-的电荷复合,并延长电子寿命,从而降低暗电流并提高开路电压(V _(oc))值。通过使用液体电解质,基于染料IQ2的DSSC表现出宽的入射光子-电流转换效率(IPCE)作用谱和高效率(·= 8.50%),且短路电流密度(J _(sc))为在AM 1.5照度(100 mW cm〜(-2))下为15.65 mA cm〜(-2),V_(oc)值为776 mV,填充系数(FF)为0.70。而且,可见光浸泡1000小时后,总效率保持在初始值的97%。

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