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具有更高效率的金属酞菁染料敏化太阳能电池的理论设计

Theoretical design of metal-phthalocyanine dye-sensitized solar cells with improved efficiency.

作者信息

Harrath K, Hussain Talib S, Boughdiri S

机构信息

Unité de recherche physico-chimie des Matériaux à l'état condensé, Département de Chimie, Faculté des Sciences de Tunis, Université Tunis El Manar, 2092, Tunis, Tunisia.

Department of Chemistry, Mohi-Ud-Din Islamic University, AJ&K, Islmabad, Pakistan.

出版信息

J Mol Model. 2018 Sep 13;24(10):279. doi: 10.1007/s00894-018-3821-6.

Abstract

The present work carried out a theoretical study of the electronic structures, absorption spectra, and photovoltaic performance of two series of transition metal-phthalocyanine derived from nonperipheral electron-donating substituents, either (2-phenyl) phenoxy(M-PC1) or quinoleinoxy(M-PC2). The DFT and TD-DFT were employed for this study. The effect of modifying the central metal atoms and the substitution on cell performance were investigated in terms of polarizability (α), hyper-polarizability (β), chemical potential (μ), chemical hardness (η), electrophilicity power (ω), FMOs, energy gaps, UV/vis absorption spectra and injected driving force (ΔG), light harvesting efficiencies (LHE), total reorganization energy (λ), open circuit photovoltage (V), and life time of the excited state (τ). The results obtained by using these parameters showed that the replacement of (2-phenyl) phenoxy by a proposed substituent such as quinoleinoxy would increase the hyper-polarizability, light harvesting efficiency, and open circuit photovoltage, while on the other hand the reorganization energy and the injection driving force are decreased. Modifying central metal atoms, such as Zn, Cd, Pd, and Pt, exhibited good performance in terms of the driving force of electron injection, charge transfer characteristics, and dye reorganization as compared with the Cu reference dye. The findings provided a useful prediction and perspective for the promising future for high-efficiency dye-sensitized solar cells (DSSCs) with dyes based on phthalocyanine. Graphical abstract Photovoltaic performance of Metallo-phthalocyanine contening (2-phenyl) phenoxy and quinoleinoxy.

摘要

本工作对源自非周边供电子取代基((2-苯基)苯氧基(M-PC1)或喹啉氧基(M-PC2))的两个系列过渡金属酞菁的电子结构、吸收光谱和光伏性能进行了理论研究。本研究采用密度泛函理论(DFT)和含时密度泛函理论(TD-DFT)。从极化率(α)、超极化率(β)、化学势(μ)、化学硬度(η)、亲电能力(ω)、前线分子轨道(FMOs)、能隙、紫外/可见吸收光谱和注入驱动力(ΔG)、光捕获效率(LHE)、总重组能(λ)、开路光电压(V)以及激发态寿命(τ)等方面研究了修饰中心金属原子和取代基对电池性能的影响。使用这些参数获得的结果表明,用喹啉氧基等拟取代基取代(2-苯基)苯氧基会增加超极化率、光捕获效率和开路光电压,而另一方面重组能和注入驱动力会降低。与作为参考染料的铜相比,修饰中心金属原子,如锌、镉、钯和铂,在电子注入驱动力、电荷转移特性和染料重组方面表现出良好的性能。这些发现为基于酞菁染料的高效染料敏化太阳能电池(DSSC)的未来发展提供了有用的预测和展望。图形摘要:含(2-苯基)苯氧基和喹啉氧基的金属酞菁的光伏性能。

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