Dye-Sensitized Solar Cells Based on Cu(I) Complexes Containing Catechol Anchor Groups That Operate with Aqueous Electrolytes

IF 8.7 Q1 CHEMISTRY, MULTIDISCIPLINARY
JACS Au Pub Date : 2025-07-28 DOI:10.1021/jacsau.5c00601
Lars E. Burmeister, Florian Doettinger, Kurt J. Haseloff, Christian Kleeberg, Mohammed Boujtita, Simon Pascal, Fabrice Odobel, Stefanie Tschierlei, Yann Pellegrin* and Michael Karnahl*, 
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引用次数: 0

Abstract

We report the design and synthesis of two novel phenanthroline-based ligands, a catechol-functionalized derivative (L1: 4,7-(4-catechol)-2,9-dimethyl-1,10-phenanthroline) ligand and its methoxy analogue (L1′). These ligands were used to prepare four Cu(I) complexes: two homoleptic bis-diimine Cu(I) complexes (C1 and C1′) and two xantphos-based heteroleptic diimine-diphosphine derivatives (C2 and C2′). Their photophysical and electrochemical properties were characterized by steady-state and time-resolved spectroscopy, cyclic voltammetry, and density functional theory (DFT) calculations. Implementation of L1, C1, and C2 in n-type DSSCs gave a photoconversion efficiency (PCE) of 1.88% for the heteroleptic Cu(I) complex C2, representing a 35-fold increase compared to previously reported diimine-diphosphine Cu(I)-based DSSCs. Incident photon-to-current efficiency (IPCE) measurements and electrochemical impedance spectroscopy confirmed efficient photoinduced charge injection and interfacial electron transfer. Moreover, the strong binding affinity of the catechol anchors enabled the fabrication of DSSCs with an aqueous electrolyte, which showed stable performance for at least 10 days. The working principle of these cells is described as a dual chromophore system, where the catechol-TiO2 interaction, operating through a type-II sensitization mechanism, acts as the primary chromophore, while the Cu(I) complex serves as an antenna chromophore.

基于含有儿茶酚锚基的Cu(I)配合物的染料敏化太阳能电池
我们设计和合成了两种新的邻菲罗啉基配体,一种儿茶酚功能化衍生物(L1: 4,7-(4-儿茶酚)-2,9-二甲基-1,10-邻菲罗啉)配体及其甲氧基类似物(L1 ')。用这些配体制备了四种铜(I)配合物:两种同色性双二亚胺铜(I)配合物(C1和C1′)和两种异色性双亚胺二膦衍生物(C2和C2′)。通过稳态和时间分辨光谱、循环伏安法和密度泛函理论(DFT)计算表征了它们的光物理和电化学性质。在n型DSSCs中实现L1、C1和C2,使异电性Cu(I)复合物C2的光转换效率(PCE)达到1.88%,与先前报道的基于二亚胺-二膦Cu(I)的DSSCs相比提高了35倍。入射光子电流效率(IPCE)测量和电化学阻抗谱证实了有效的光诱导电荷注入和界面电子转移。此外,儿茶酚锚点的强结合亲和力使其能够在水电解质中制备DSSCs,其性能稳定至少10天。这些细胞的工作原理被描述为双发色团系统,其中儿茶酚- tio2相互作用通过ii型敏化机制运作,作为初级发色团,而Cu(I)复合物作为天线发色团。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
9.10
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