p—π Conjugated Polyelectrolytes Toward Universal Electrode Interlayer Materials for Diverse Optoelectronic Devices

Author:

Wang He1,Yang Yi23,Zhang Yuzhuo1,Wang Shumeng4,Tan Zhan'ao1,Yan Shouke1,Wang Lixiang4,Hou Jianhui23,Xu Bowei1ORCID

Affiliation:

1. State Key Laboratory of Chemical Resource Engineering College of Materials Science and Engineering Beijing University of Chemical Technology Beijing 100029 P. R. China

2. State Key Laboratory of Polymer Physics and Chemistry Beijing National Laboratory for Molecular Sciences Institute of Chemistry Chinese Academy of Sciences Beijing 100190 P. R. China

3. University of Chinese Academy of Sciences Beijing 100049 P. R. China

4. State Key Laboratory of Polymer Physics and Chemistry Changchun Institute of Applied Chemistry Chinese Academy of Sciences Changchun Jilin 130022 P. R. China

Abstract

AbstractThe development of universal interlayer materials for diverse optoelectronic devices not only decreases the costs in both laboratory research and industrialized production, but also improves the uniformity of different devices so as to facilitate device integration. However, using one material to fabricate diverse devices remains a great challenge. Herein, p‐π conjugation is utilize to replace the commonly used π–π conjugation to develop an unprecedented anode interlayer (AIL) material PCP‐S that can be universally used in diverse optoelectronic devices, including organic light‐emitting diode (OLED), organic solar cell (OSC), and perovskite solar cell (PSC). The unique solubility and the easy adjustment of optoelectronic properties are keys to realize the multiple uses of PCP‐S. First, OSC based on the polyoxometalate (POM)‐doped PCP‐S exhibits a high power conversion efficiency (PCE) of 17.1%, representing the highest efficiency for OSCs using a solution‐processed pH‐neutral AIL. Second, PSC with PCP‐S shows a PCE of 20.1%, which is superior to the device with poly(triaryl amine) (PTAA). Third, OLED possesses a significantly reduced turn‐on voltage from 3.8 to 2.8 V by incorporating the PCP‐S AIL. To the best of the authors’ knowledge, this is the first example of a universal AIL material to realize multiple applications.

Funder

Fundamental Research Funds for the Central Universities

National Natural Science Foundation of China

Publisher

Wiley

Subject

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

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