Enhancing Planar Inverted Perovskite Solar Cells with Innovative Dumbbell‐Shaped HTMs: A Study of Hexabenzocoronene and Pyrene‐BODIPY‐Triarylamine Derivatives

Author:

Rocha‐Ortiz Juan S.12ORCID,Wu Jianchang13,Wenzel Jonas4,Bornschlegl Andreas J.1,Perea Jose Dario1ORCID,Leon Salvador5ORCID,Barabash Anastasia1,Wollny Anna‐Sophie6,Guldi Dirk M.6,Zhang Jiyun13,Insuasty Alberto7,Lüer Larry1,Ortiz Alejandro2,Hirsch Andreas4,Brabec Christoph J.13

Affiliation:

1. Friedrich‐Alexander‐Universität Erlangen‐Nürnberg Department of Materials Science and Engineering Institute of Materials for Electronics and Energy Technology (i‐MEET) Martensstraße 7 91058 Erlangen Germany

2. Universidad del Valle Departamento de Química Grupo de Investigación de Compuestos Heterocíclicos Calle 13 #100‐00 Cali 760032 Colombia

3. Helmholtz‐Institute Erlangen‐Nürnberg (HI‐ERN) Immerwahrstraße 2 91058 Erlangen Germany

4. Friedrich‐Alexander‐Universität Erlangen‐ Nürnberg Department of Chemistry and Pharmacy Nikolaus‐Fiebiger‐Straße 10 91058 Erlangen Germany

5. Universidad Politécnica de Madrid Departamento de Ingeniería Química ETSIIM José Gutiérrez Abascal 2 28006 Madrid Spain

6. Friedrich‐Alexander‐Universität Erlangen‐ Nürnberg Department of Chemistry and Pharmacy Egerlandstraße 3 91058 Erlangen Germany

7. Universidad CESMAG Nanostructured Functional Materials Research Group Carrera 20a # 14–54 Pasto 520003 Colombia

Abstract

AbstractDumbbell‐shaped systems based on PAHs‐BODIPY‐triarylamine hybrids TM‐(01‐04) are designed as novel and highly efficient hole‐transporting materials for usage in planar inverted perovskite solar cells. BODIPY is employed as a bridge between the PAH units, and the effects of the conjugated π‐system's covalent attachment and size are investigated. Fluorescence quenching, 3D fluorescence heat maps, and theoretical studies support energy transfer within the moieties. The systems are extremely resistant to UVC 254 nm germicidal light sources and present remarkable thermal stability at degradation temperatures exceeding 350 °C. Integrating these systems into perovskite solar cells results in outstanding power conversion efficiency (PCE), with TM‐02‐based devices exhibiting a PCE of 20.26%. The devices base on TM‐01, TM‐03, and TM‐04 achieve PCE values of 16.98%, 17.58%, and 18.80%, respectively. The long‐term stability of these devices is measured for 600 h, with initial efficiency retention between 94% and 86%. The TM‐04‐based device presents noticeable stability of 94%, better than the reference polymer PTAA with 91%. These findings highlight the exciting potential of dumbbell‐shaped systems based on PAHs‐BODIPY‐triarylamine derivatives for next‐generation photovoltaics.

Funder

Deutscher Akademischer Austauschdienst

China Scholarship Council

Universidad del Valle

Deutsche Forschungsgemeinschaft

Publisher

Wiley

Subject

Electrochemistry,Condensed Matter Physics,Biomaterials,Electronic, Optical and Magnetic Materials

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. A present scenario of the computational approaches for ternary organic solar cells;Journal of Renewable and Sustainable Energy;2023-11-01

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