Screening potential dye sensitizers for water splitting photocatalysts using a genetic algorithm

被引:0
|
作者
Liu, Tao [1 ]
Chen, Linjiang [2 ,3 ]
Wang, Xiaoyan [1 ]
Cooper, Andrew I. [1 ]
机构
[1] Univ Liverpool, Leverhulme Res Ctr Funct Mat Design, Dept Chem & Mat Innovat Factory, 51 Oxford St, Liverpool L7 3NY, England
[2] Univ Birmingham, Sch Chem, Birmingham B15 2TT, England
[3] Univ Birmingham, Sch Comp Sci, Birmingham B15 2TT, England
基金
英国工程与自然科学研究理事会;
关键词
D-PI-A; COVALENT ORGANIC FRAMEWORKS; DENSITY-FUNCTIONAL THEORY; HYDROGEN GENERATION; HIGH-EFFICIENCY; SOLAR-CELLS; DESIGN; OPTIMIZATION; CRYSTALLINE; SYSTEMS;
D O I
10.1039/d4cp01487a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Addressing the global fossil energy crisis necessitates the efficient utilization of sustainable energy sources. Hydrogen, a green fuel, can be generated using sunlight, water, and a photocatalyst. Employing sensitizers holds promise for enhancing photocatalyst performance, enabling high rates of hydrogen evolution through increased visible light absorption. However, sifting through millions of diverse molecules to identify suitable dyes for specific photocatalysts poses a significant challenge. In this study, we integrate genetic algorithm and geometry-frequency-noncovalent extended tight binding methods to efficiently screen 2.6 million potential sensitizers with a D-pi-A-pi-AA structure within a short timeframe. Subsequently, these optimized sensitizers are rigorously reassessed by using DFT/TDDFT methods, elucidating why they may serve as superior dyes compared to the reference dye WS5F, particularly in terms of light absorption, driving force, binding energy, etc. Additionally, our methodology uncovers molecular motifs of particular interest, including the furan pi-bridge and the double cyano anchoring acceptor, which are prevalent in the most promising set of molecules. The developed genetic algorithm workflow and dye design principles can be extended to various compelling projects, such as dye-sensitized solar cells, organic photovoltaics, photo-induced redox reactions, pharmaceuticals, and beyond. Genetic algorithm-enabled high-throughput screening of dye molecules for water splitting.
引用
收藏
页码:16847 / 16858
页数:12
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