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Batch‐to‐Batch Variation of Polymeric Photovoltaic Materials: its Origin and Impacts on Charge Carrier Transport and Device Performances
Authors:Harrison Ka Hin Lee  Zhao Li  Iordania Constantinou  Franky So  Sai Wing Tsang  Shu Kong So
Institution:1. Department of Physics and Institute of Advanced Materials, Hong Kong Baptist University, Kowloon Tong, Hong Kong, P. R. China;2. Institute for Chemical Process and Environmental Technology, National Research Council of Canada, Ottawa, Canada;3. Department of Materials Science and Engineering, University of Florida, Gainesville, FL, USA;4. Department of Physics and Materials Science, City University of Hong Kong, Kowloon Tong, Hong Kong, P. R. China
Abstract:A detailed investigation of the impact of molecular weight distribution of a photoactive polymer, polyN‐9′‐heptadecanyl‐2,7‐carbazole‐alt‐5,5‐(4′,7′‐di‐2‐thienyl‐2′,1′,3′‐benzothiadiazole)] (PCDTBT), on photovoltaic device performance and carrier transport properties is reported. It is found that different batches of as‐received polymers have substantial differences in their molecular weight distribution. As revealed by gel permeation chromatography (GPC), two peaks can generally be observed. One of the peaks corresponds to a high molecular weight component and the other peak corresponds to a low molecular weight component. Photovoltaic devices fabricated with a higher proportion of low molecular weight component have power conversion efficiencies (PCEs) reduced from 5.7% to 2.5%. The corresponding charge carrier mobility at the short‐circuit region is also significantly reduced from 2.7 × 10?5 to 1.6 × 10?8 cm2 V?1 s?1. The carrier transport properties of the polymers at various temperatures are further analyzed by the Gaussian disorder model (GDM). All polymers have similar energetic disorders. However, they appear to have significant differences in carrier hopping distances. This result provides insight into the origin of the molecular weight effect on carrier transport in polymeric semiconducting materials.
Keywords:molecular weight  charge transport  mobility  hopping distance  photovoltaic devices  polymeric materials
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