High-Pressure Fabrication of Binary Organic Solar Cells with High Molecular Weight D18 Yields Record 19.65 % Efficiency.

Angew Chem Int Ed Engl

College of Textiles & Clothing, State Key Laboratory of Bio-fibers and Eco-textiles, Qingdao University, Qingdao, 266071, China.

Published: December 2023

AI Article Synopsis

  • A high-pressure method inspired by a pressure cooker was used to dissolve high molecular weight polymers, specifically D18, in chloroform at elevated temperatures.
  • This innovative technique produced a hybrid film with improved molecular arrangement and crystallinity, enhancing performance characteristics.
  • The resulting organic solar cells achieved a remarkable power conversion efficiency of 19.65%, marking a new record for binary solar devices and indicating the method's applicability for better performance in various systems.

Article Abstract

In this work, inspired by the principles of a pressure cooker, we utilized a high-pressure method to address the processing challenges associated with high molecular weight polymers. Through this approach, we successfully dissolved high molecular weight D18 in chloroform at 100 °C within a pressure-tight vial. The increased steam pressure raised the boiling point and dissolving capacity of chloroform, enabling the creation of a hybrid film with superior properties, including more ordered molecular arrangement, increased crystallinity, extended exciton diffusion length, and improved phase morphology. Organic solar cells (OSCs) based on D18 : L8-BO prepared using this high-pressure method achieved an outstanding power conversion efficiency of 19.65 %, setting a new record for binary devices to date. Furthermore, this high-pressure method was successfully applied to fabricate OSCs based on other common systems, leading to significant enhancements in device performance. In summary, this research introduces a universal method for processing high molecular weight D18 materials, ultimately resulting in the highest performance reported for binary organic solar cells.

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Source
http://dx.doi.org/10.1002/anie.202314420DOI Listing

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