Literature DB >> 29125654

Ternary Nonfullerene Polymer Solar Cells with 12.16% Efficiency by Introducing One Acceptor with Cascading Energy Level and Complementary Absorption.

Weigang Jiang1, Runnan Yu2, Zhiyang Liu1, Ruixiang Peng1, Dongbo Mi1, Ling Hong1, Qiang Wei1, Jianhui Hou2, Yongbo Kuang1, Ziyi Ge1.   

Abstract

A novel small-molecule acceptor, (2,2'-((5E,5'E)-5,5'-((5,5'-(4,4,9,9-tetrakis(5-hexylthiophen-2-yl)-4,9-dihydro-s-indaceno[1,2-b:5,6-b']dithiophene-2,7-diyl)bis(4-(2-ethylhexyl)thiophene-5,2-diyl))bis(methanylylidene)) bis(3-hexyl-4-oxothiazolidine-5,2-diylidene))dimalononitrile (ITCN), end-capped with electron-deficient 2-(3-hexyl-4-oxothiazolidin-2-ylidene)malononitrile groups, is designed, synthesized, and used as the third component in fullerene-free ternary polymer solar cells (PSCs). The cascaded energy-level structure enabled by the newly designed acceptor is beneficial to the carrier transport and separation. Meanwhile, the three materials show a complementary absorption in the visible region, resulting in efficient light harvesting. Hence, the PBDB-T:ITCN:IT-M ternary PSCs possess a high short-circuit current density (Jsc ) under an optimal weight ratio of donors and acceptors. Moreover, the open-circuit voltage (Voc ) of the ternary PSCs is enhanced with an increase of the third acceptor ITCN content, which is attributed to the higher lowest unoccupied molecular orbital energy level of ITCN than that of IT-M, thus exhibits a higher Voc in PBDB-T:ITCN binary system. Ultimately, the ternary PSCs achieve a power conversion efficiency of 12.16%, which is higher than the PBDB-T:ITM-based PSCs (10.89%) and PBDB-T:ITCN-based ones (2.21%). This work provides an effective strategy to improve the photovoltaic performance of PSCs.
© 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim.

Entities:  

Keywords:  complementary absorption; energy level; nonfullerene acceptor; open-circuit voltage; ternary polymer solar cells

Year:  2017        PMID: 29125654     DOI: 10.1002/adma.201703005

Source DB:  PubMed          Journal:  Adv Mater        ISSN: 0935-9648            Impact factor:   30.849


  8 in total

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3.  Constructing Desired Vertical Component Distribution Within a PBDB-T:ITIC-M Photoactive Layer via Fine-Tuning the Surface Free Energy of a Titanium Chelate Cathode Buffer Layer.

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Journal:  Front Chem       Date:  2018-08-20       Impact factor: 5.221

4.  Enabling low voltage losses and high photocurrent in fullerene-free organic photovoltaics.

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Journal:  Nat Commun       Date:  2019-02-04       Impact factor: 14.919

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Authors:  Hao Huang; Qingxin Guo; Shiyu Feng; Cai'e Zhang; Zhaozhao Bi; Wenyue Xue; Jinjin Yang; Jinsheng Song; Cuihong Li; Xinjun Xu; Zheng Tang; Wei Ma; Zhishan Bo
Journal:  Nat Commun       Date:  2019-07-10       Impact factor: 14.919

6.  Photoisomerization of dicyanorhodanine-functionalized thiophenes.

Authors:  Cory T Kornman; Lei Li; Asmerom O Weldeab; Ion Ghiviriga; Khalil A Abboud; Ronald K Castellano
Journal:  Chem Sci       Date:  2020-09-09       Impact factor: 9.825

7.  Insights into photovoltaic properties of ternary organic solar cells from phase diagrams.

Authors:  Mohammed Makha; Philippe Schwaller; Karen Strassel; Surendra B Anantharaman; Frank Nüesch; Roland Hany; Jakob Heier
Journal:  Sci Technol Adv Mater       Date:  2018-09-25       Impact factor: 8.090

8.  Introducing Trifluoromethyl to Strengthen Hydrogen Bond for High Efficiency Organic Solar Cells.

Authors:  Hao Zhang; Xiaoyang Du; Yunhan Tang; Xi Lu; Lei Zhou; Caijun Zheng; Hui Lin; Silu Tao
Journal:  Front Chem       Date:  2020-03-24       Impact factor: 5.221

  8 in total

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