首站-论文投稿智能助手
典型文献
Unfused-ring Acceptors with Dithienobenzotriazole Core for Efficient Organic Solar Cells
文献摘要:
In recent years,non-fullerene acceptors(NFAs)with unfused-ring structure have received extensive attention due to their flexible combination of building blocks and relatively simple synthetic routes.In this work,three new A-D-C-D-A type unfused-ring acceptors(UFAs),named DTBTzEH-IC2F,DTBTzMe-IC2F and DTBTzMe-IC2CI,were designed and synthesized with dithienobenzotriazole(DTBTz)as the core.Through modification of alkyl chain on the DTBTz unit and change of halogen atoms on the cyanoindanone end groups,the differences in optoelectronic properties of these three small molecule acceptors were investigated.The results show that changes in alkyl chain and halogen atom endow UFAs with different features,including shift in absorption,changes in energy level and molecular packing.When blended with donor PBDB-T,the organic solar cell based on DTBTzMe-IC2CI achieves the highest device efficiency of 12.3%,while DTBTzEH-IC2F-based device obtains 11.5%efficiency and DTBTzMe-IC2F-based device obtains 12.0%efficiency.The stability tests show that all the devices obtain good efficiency retention rates.These results demonstrate that the introduction of a rigid aromatic ring DTBTz as an intermediate core not only effectively results in highly planar A-D-C-D-A small molecules,but also provides a new reference for the design and development of UFAs in OSCs.
文献关键词:
作者姓名:
Zui-Yi Zhong;Jia-Xin Xu;Kai Zhang;Ming-Hao Dong;Qi-Ri Huang;Fei Huang
作者机构:
Institute of Polymer Optoelectronic Materials and Devices,State Key Laboratory of Luminescent Materials and Devices,South China University of Technology,Guangzhou 510640,China
引用格式:
[1]Zui-Yi Zhong;Jia-Xin Xu;Kai Zhang;Ming-Hao Dong;Qi-Ri Huang;Fei Huang-.Unfused-ring Acceptors with Dithienobenzotriazole Core for Efficient Organic Solar Cells)[J].高分子科学(英文版),2022(12):1586-1593
A类:
Unfused,Dithienobenzotriazole,unfused,DTBTzEH,IC2F,DTBTzMe,IC2CI,dithienobenzotriazole,DTBTz,cyanoindanone
B类:
ring,Acceptors,Core,Efficient,Organic,Solar,Cells,In,recent,years,fullerene,acceptors,NFAs,structure,have,received,extensive,attention,due,their,flexible,combination,building,blocks,relatively,simple,synthetic,routes,this,work,three,new,type,UFAs,named,were,designed,synthesized,core,Through,modification,alkyl,chain,unit,halogen,atoms,groups,differences,optoelectronic,properties,these,small,investigated,results,show,that,changes,endow,different,features,including,shift,absorption,energy,level,molecular,packing,When,blended,donor,PBDB,organic,solar,cell,achieves,highest,efficiency,while,obtains,stability,tests,devices,good,retention,rates,These,demonstrate,introduction,rigid,aromatic,intermediate,not,only,effectively,highly,planar,molecules,but,also,provides,reference,development,OSCs
AB值:
0.497907
相似文献
Effects of Flexible Conjugation-Break Spacers of Non-Conjugated Polymer Acceptors on Photovoltaic and Mechanical Properties of All-Polymer Solar Cells
Qiaonan Chen;Yung Hee Han;Leandro R.Franco;Cleber F.N.Marchiori;Zewdneh Genene;C.Moyses Araujo;Jin-Woo Lee;Tan Ngoc-Lan Phan;Jingnan Wu;Donghong Yu;Dong Jun Kim;Taek-Soo Kim;Lintao Hou;Bumjoon J.Kim;Ergang Wang-Siyuan Laboratory,Guangzhou Key Laboratory of Vacuum Coating Technologies and New Energy Materials,Department of Physics,Jinan University,Guangzhou 510632,People's Republic of China;Department of Chemistry and Chemical Engineering,Chalmers University of Technology,SE-412 96,G?teborg,Sweden;Department of Chemical and Biomolecular Engineering,Korea Advanced Institute of Science and Technology(KAIST),Daejeon 34141,Republic of Korea;Department of Engineering and Physics,Karlstad University,65188 Karlstad,Sweden;Materials Theory Division,Department of Physics and Astronomy,Uppsala University,75120 Uppsala,Sweden;Department of Chemistry and Bioscience,Aalborg University,9220 Aalborg,Denmark;Sino-Danish Center for Education and Research,8000 Aarhus,Denmark;Department of Mechanical Engineering,Korea Advanced Institute of Science and Technology(KAIST),Daejeon 34141,Republic of Korea;School of Materials Science and Engineering,Zhengzhou University,Zhengzhou 450001,People's Republic of China
High-Performance Perovskite Quantum Dot Solar Cells Enabled by Incorporation with Dimensionally Engineered Organic Semiconductor
Seyeong Lim;Dae Hwan Lee;Hyuntae Choi;Yelim Choi;Dong Geon Lee;Sung Beom Cho;Seonkyung Ko;Jongmin Choi;Younghoon Kim;Taiho Park-Department of Chemical Engineering,Pohang University of Science and Technology(POSTECH),Pohang 37673,Republic of Korea;Department of Materials Science and Engineering,Hanyang University,Seoul 04763,Republic of Korea;Center of Materials Digitalization,Korea Institute of Ceramic Engineering and Technology(KICET),Jinju 52851,Republic of Korea;Department of Materials Science and Engineering,Ajou University,Suwon 16499,Republic of Korea;Department of Energy Science and Engineering,Daegu Gyeongbuk Institute of Science and Technology(DGIST),Daegu 42988,Republic of Korea;Department of Chemistry,Kookmin University,Seoul 02707,Republic of Korea
Influence of Halide Choice on Formation of Low-Dimensional Perovskite Interlayer in Efficient Perovskite Solar Cells
Xueping Liu;Thomas Webb;Linjie Dai;Kangyu Ji;Joel A.Smith;Rachel C.Kilbride;Mozhgan Yavari;Jinxin Bi;Aobo Ren;Yuanyuan Huang;Zhuo Wang;Yonglong Shen;Guosheng Shao;Stephen J.Sweeney;Steven Hinder;Hui Li;David G.Lidzey;Samuel D.Stranks;Neil C.Greenham;S.Ravi P.Silva;Wei Zhang-State Center for International Cooperation on Designer Low-carbon&Environmental Materials(CDLCEM),Zhengzhou University,Zhengzhou 450001,China;Advanced Technology Institute,Department of Electrical and Electronic Engineering,University of Surrey,Guildford GU2 7XH,UK;Cavendish Laboratory,University of Cambridge,Cambridge CB3 0HE,UK;Department of Physics and Astronomy,University of Sheffield,Sheffield S37RH,UK;Department of Physics,University of Oxford,Clarendon Laboratory,Oxford OX1 3PU,UK;Advanced Technology Institute and Department of Physics,University of Surrey,Guildford GU2 7XH,UK;The Surface Analysis Laboratory,Department of Mechanical Engineering Sciences,University of Surrey,Guildford GU2 7XH,UK;Institute of Electrical Engineering,Chinese Academy of Sciences,Beijing 100190,China;Department of Chemical Engineering and Biotechnology,University of Cambridge,Cambridge CB3 0AS,UK
Air-Processed Efficient Organic Solar Cells from Aromatic Hydrocarbon Solvent without Solvent Additive or Post-Treatment:Insights into Solvent Effect on Morphology
Ruijie Ma;Tao Yang;Yiqun Xiao;Tao Liu;Guangye Zhang;Zhenghui Luo;Gang Li;Xinhui Lu;He Yan;Bo Tang-College of Chemistry,Chemical Engineering and Materials Science,Key Laboratory of Molecular and Nano Probes,Ministry of Education,Collaborative Innovation Center of Functionalized Probes for Chemical Imaging in Universities of Shandong,Institute of Materials and Clean Energy,Shandong Provincial Key Laboratory of Clean Production of Fine Chemicals,Shandong Normal University,Jinan 250014,China;Department of Chemistry,Guangdong-Hong Kong-Macao Joint Laboratory of Optoelectronic and Magnetic Functional Materials,Energy Institute and Hong Kong Branch of Chinese National Engineering Research Center for Tissue Restoration&Reconstruction,Hong Kong University of Science and Technology,Clear Water Bay,Kowloon,Hong Kong,China;College of New Materials and New Energies,Shenzhen Technology University,Shenzhen 518118 China;Department of Physics,Chinese University of Hong Kong,New Territories Hong Kong,China;Hong Kong University of Science and Technology-Shenzhen Research Institute,No.9 Yuexing first RD,Hi-tech Park,Nanshan,Shenzhen 518057,China;Institute of Polymer Optoelectronic Materials and Devices,State Key Laboratory of Luminescent Materials and Devices,South China University of Technology(SCUT),Guangzhou 510640,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。