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预测新型线性碳链基染料的染料敏化太阳能电池性能:来自密度泛函理论模拟的见解

Predicting the dye-sensitized solar cell performance of novel linear carbon chain-based dyes: insights from DFT simulations.

作者信息

Consiglio Giuseppe, Gorcyński Adam, Petralia Salvatore, Forte Giuseppe

机构信息

Department of Chemical Sciences, University of Catania, Via S. Sofia 64, 95125, Italy.

Faculty of Chemistry, Adam Mickiewicz University, Uniwersytetu Poznańskiego 8, 61-614 Poznań, Poland.

出版信息

Dalton Trans. 2023 Nov 7;52(43):15995-16004. doi: 10.1039/d3dt01856c.

Abstract

In this paper, we employ density functional theory (DFT) simulations to predict the energy conversion efficiency of a novel class of organic dyes based on linear carbon chain (LCC) linkers for application in dye-sensitized solar cells (DSSCs). We investigate the role of the anchoring group, which serves as a bridge connecting the linker and the surface. Specifically, we compare the performance of cyanoacrylic acid, dyes PY-4N and PY-3N, with that of phosphonate derivatives, dyes PY-4NP and PY-3NP, wherein the carboxylic group of the cyanoacrylic moiety is replaced with phosphonic acid. The observed variations in the UV/VIS absorption spectra have a slight impact on the light harvesting efficiency (LHE). Based on the empirical parameters we have taken into account, the electron injection efficiency () and electron collection efficiency () values do not impact the short-circuit current density () values of all the studied dyes. The open-circuit voltage () is theoretically predicted using the improved normal model (INM) method. Among the dyes, PY-4N and PY-3N demonstrate the highest values. This can be attributed to a more favorable recombination rate value, which is related to the energy gap between the HOMO level of the dyes and the conduction band minimum (CBM) of the surface. Dyes PY-4N and PY-3N are predicted to demonstrate remarkably high photoelectric conversion efficiency (PCE) values of approximately 21.79% and 16.52%, respectively, and therefore, they are expected to be potential candidates as organic dyes for applications in DSSCs. It is worth noting that PY-4NP and PY-3NP exhibit strong adsorption energy on the surface and interesting PCE values of 11.66% and 8.29%, respectively. This opens up possibilities for their application in DSSCs either as standalone sensitizers or as co-sensitizers alongside metal-free organic dyes or organic-inorganic perovskite solar cells.

摘要

在本文中,我们采用密度泛函理论(DFT)模拟来预测一类基于线性碳链(LCC)连接体的新型有机染料在染料敏化太阳能电池(DSSC)中的能量转换效率。我们研究了作为连接连接体和表面桥梁的锚定基团的作用。具体而言,我们比较了氰基丙烯酸、染料PY - 4N和PY - 3N与膦酸酯衍生物、染料PY - 4NP和PY - 3NP的性能,其中氰基丙烯酸部分的羧基被膦酸取代。紫外/可见吸收光谱中观察到的变化对光捕获效率(LHE)有轻微影响。基于我们考虑的经验参数,电子注入效率()和电子收集效率()值不会影响所有研究染料的短路电流密度()值。开路电压()使用改进的正态模型(INM)方法进行理论预测。在这些染料中,PY - 4N和PY - 3N表现出最高的 值。这可归因于更有利的复合率值,其与染料的最高占据分子轨道(HOMO)能级和表面导带最小值(CBM)之间的能隙有关。预测染料PY - 4N和PY - 3N分别具有约21.79%和16.52%的显著高光电转换效率(PCE)值,因此,它们有望成为用于DSSC的有机染料的潜在候选者。值得注意的是,PY - 4NP和PY - 3NP在表面表现出很强的吸附能,有趣的是PCE值分别为11.66%和8.29%。这为它们作为独立敏化剂或与无金属有机染料或有机 - 无机钙钛矿太阳能电池一起作为共敏化剂在DSSC中的应用开辟了可能性。

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