Novel dithienosilole-based conjugated copolymers and their application in bulk heterojunction solar cells
文献情報
Lijie Liu, Jinsheng Song, Heng Lu, Hua Wang, Zhishan Bo
Three asymmetrical dithienosilole monomers with different electron withdrawing groups (nonanoyl group, octyl cyanoacetate or malononitrile) were synthesized and a series of silicon containing conjugated polymers (PBDTDTSi-1, PBDTDTSi-2 to PBDTDTSi-3) were prepared from these asymmetrical dithienosilole building blocks via microwave assisted polymerization. Density functional theory (DFT) quantum chemistry calculations were employed for the optimization of molecular structures, deep understanding of the electronic structures and their photophysical properties. When these polymers were utilized as the donor materials for polymer solar cells (PSCs), the influence of side chains on the photovoltaic performance was investigated and all the polymers presented high open-circuit voltage above 1.0 V. PSCs with a blend of PBDTDTSi-1:PC71BM (1 : 4, by weight) as the active layer showed the highest power conversion efficiency of 3.29%, with an open-circuit voltage of 1.07 V, a short-circuit current density of 7.53 mA cm−2, and a fill factor of 0.41. Our research revealed that the variation of substituents on the dithienosilole moieties had a great influence on the morphology of blend films and charge carrier mobilities, which are crucial to the performance of PSCs.
おすすめジャーナル

Advances in Colloid and Interface Science

Accounts of Chemical Research

Corrosion Science

Chemistry of Natural Compounds

Bulletin of the Chemical Society of Japan

Australian Journal of Chemistry

AIAA Journal

Canadian Metallurgical Quarterly

Journal of the American Chemical Society

Chemistry of Heterocyclic Compounds
関連文献
Self-adaptive multiscaling algorithm for efficient simulations of many-protein systems in crowded conditions
DOI: 10.1039/C8CP05517C
Photoelectron spectroscopy of solvated dicarboxylate and alkali metal ion clusters, M+[O2C(CH2)2CO2]2− [H2O]n (M = Na, K; n = 1–6)
Shihu H. M. Deng, Gao-Lei Hou, Marat Valiev, Xue-Bin Wang
DOI: 10.1039/C8CP03896A
Understanding the differences between iron and palladium in cross-coupling reactions
Xiaobo Sun, Trevor A. Hamlin
DOI: 10.1039/C8CP07671E
Distribution of water in the pores of periodic mesoporous organosilicates – a proton solid state MAS NMR study
V. S. Veena, Kavya Illath, Anish Lazar, C. P. Vinod, T. G. Ajithkumar, S. Jayanthi
DOI: 10.1039/C8CP04902E
X-ray emission spectroscopy: an effective route to extract site occupation of cations
Anuj Bhargava, Cindy Y. Chen, Kenneth D. Finkelstein, Richard D. Robinson
DOI: 10.1039/C8CP04628J
Excited state dynamics study of the self-trapped exciton formation in silicon nanosheets
Naeem Ullah, Shunwei Chen
DOI: 10.1039/C8CP04806A
Protonation-induced molecular permeation at the oil/water interface in an electric field
DOI: 10.1039/C8CP04028A
Excited interatomic potential energy surfaces of Rb + He that correlate with Rb terms 52S through 72S
Amit R. Sharma, David E. Weeks
DOI: 10.1039/C8CP05550E
Entropy in multiple equilibria, compounds with different sites
DOI: 10.1039/C8CP04145H
Boron-based binary Be6B102− cluster: three-layered aromatic sandwich, electronic transmutation, and dynamic structural fluxionality
Lin-Yan Feng, Peng-Fei Li, Hua-Jin Zhai
DOI: 10.1039/C8CP04332A
こちらもおすすめ
「邻羟基阿托伐他汀内酯标准品」に適用される法規ガイドelinesは何ですか?
CAS番号163217-74-1の「邻羟基阿托伐他汀内酯标准品」は、GHS分類では危険物に分類されず、主にREACH規則とFDA/EPAの管理対象となります。R...
メチル(3R)-3-アミノ-2,3-ジヒドロ-1-ベンゾファンラニン-5-カルボイル酸塩塩酸塩の主な用途は何ですか?
メチル(3R)-3-アミノ-2,3-ジヒドロ-1-ベンゾファンラニン-5-カルボイル酸塩塩酸塩は、医薬品や合成化学の研究に広く用いられます。また、特定の薬物の前...
トランス-4-メチルピロリジン-3-オール塩酸塩はどのように合成されますか?
トランス-4-メチルピロリジン-3-オール塩酸塩は、4-メチルピロリジンの塩酸塩化によって合成されます。一般的な合成方法では、4-メチルピロリジンを塩酸に加えて...
硫雜環丁烷-1,1-二氧化物は安全ですか?
硫雜環丁烷-1,1-二氧化物は安全ではありません。毒性は報告されていませんが、高温下で分解し、可燃性があるため、高圧ガスは注意が必要です。密閉した容器で保管し、...
9-ヒドロキシエリプチシネ塩酸塩はどのように合成されますか?
9-ヒドロキシエリプチシネ塩酸塩は、エリプチシネから塩酸を添加することで合成されます。選択性は高いですが、収率は約70%です。
5-塩素-2-(メチルアミノ)フェニル-(2-塩素フェニル)メタン酮の物理化学的性質は何ですか?
5-塩素-2-(メチルアミノ)フェニル-(2-塩素フェニル)メタン酮のCAS番号は5621-86-3です。この化合物は白色の結晶性粉末で、分子量は415.03で...
1-[2-(4-甲氧基-苯氧基)-乙基]-哌嗪はどのように保存すればよいですか?
1-[2-(4-甲氧基-苯氧基)-乙基]-哌嗪は、直射日光を避けて暗所に、室温(15-25℃)で保管し、密閉容器に入れることで安定性を保つことができます。
2-[3-(4-甲氧基フェニル)プロピル]-4,4,5,5-四メチル-1,3,2-ドイボロロールアンの主な用途は何ですか?
2-[3-(4-甲氧基フェニル)プロピル]-4,4,5,5-四メチル-1,3,2-ドイボロロールアンは、医薬品の合成、有機合成化学、および新材料の研究で使用され...
掲載誌
Polymer Chemistry

Polymer Chemistry welcomes submissions in all areas of polymer science that have a strong focus on macromolecular chemistry. Manuscripts may cover a broad range of fields, yet no direct application focus is required.



![S-[2,3-Bis(palmitoyloxy)propyl]-N-[(9H-fluoren-9-ylmethoxy)(hydroxy)methylene]cysteine structure S-[2,3-Bis(palmitoyloxy)propyl]-N-[(9H-fluoren-9-ylmethoxy)(hydroxy)methylene]cysteine structure](https://static.chemtradehub.com/structs/210/210532-98-2-f6a7.webp)
