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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Facile one-pot polymerization of a fully conjugated donor-acceptor block copolymer and its application in efficient single component polymer solar cells
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Facile one-pot polymerization of a fully conjugated donor-acceptor block copolymer and its application in efficient single component polymer solar cells

机译:容纳一次共轭供体 - 受体嵌段共聚物的一罐聚合及其在高效单组分聚合物太阳能电池中的应用

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Conjugated block copolymers containing donor (D) and acceptor (A) blocks have high potential for single component polymer solar cells (SC-PSCs), but still exhibit the complexity of polymer synthesis and low device efficiency. In this research, we successfully synthesized a new fully conjugated D-A block copolymer (CDABP) by performing the entire reaction in one-pot from start to completion. This polymerization method has the advantage of saving synthesis time and cost. The photoluminescence (PL) of the CDABP film was completely quenched due to photoinduced inter/intramolecular charge transfer. A single component polymer solar cell (SC-PSC) with a CDABP film annealed at 180 degrees C showed the maximum power conversion efficiency (PCE) of 5.28%, a high short circuit current of 10.77 mA cm(-2) and a fill factor of 62.86%, which is much higher than that (2.62%) of the device with the as-cast film. This performance can be attributed to its fine internal/surface morphology and high crystallinity of the CDABP film. In addition, transient absorption experiments on the CDABP films showed that charge carrier generation is faster and the lifetime of the generated charge carriers is longer in the annealed film than in the as-cast film. Our research explicitly provides a new structural design and simple synthesis strategy for D-A conjugate block copolymers for high-efficiency SC-PSCs.
机译:含有供体(D)和受体(A)嵌段的共轭嵌段共聚物具有高潜力的单组分聚合物太阳能电池(SC-PSC),但仍然表现出聚合物合成和低器件效率的复杂性。在该研究中,我们通过从开始完成,通过在一次性反应中成功地合成了一种新的完全缀合的D-A嵌段共聚物(CDABP)。该聚合方法具有节省合成时间和成本的优点。 CDABP膜的光致发光(PL)由于光突出的间/分子内电荷转移而完全淬火。具有在180℃的CDABP膜退火的单个组分聚合物太阳能电池(SC-PSC)显示最大功率转换效率(PCE)为5.28%,高电路电流为10.77 mA cm(-2)和填充因子62.86%,远高于用作铸造膜的装置(2.62%)。这种性能可归因于其CDABP薄膜的细内/表面形态和高结晶度。此外,CDABP膜上的瞬态吸收实验表明,电荷载流子产生更快,并且产生的电荷载体的寿命比在作为铸造膜中的退火膜更长。我们的研究明确为D-A缀合物嵌段共聚物提供了一种新的结构设计和简单的合成策略,用于高效SC-PSC。

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